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4b Electrophilic Aromatic Substitution
Weaver G.W.
Chapter 4 4b Electrophilic Aromatic Substitution G. W. Weaver, G. W. Weaver Department of Chemistry, Loughborough University, Loughborough, Leicestershire, UKSearch for more papers by this author G. W. Weaver, G. W. Weaver Department of Chemistry, Loughborough University, Loughborough, Leicestershire, UKSearch for more papers by this author Book Editor(s):Mark Moloney, Mark Moloney University of Oxford, Mansfield Road, Oxford, UK, OX1 3TA United KingdomSearch for more papers by this author First published: 15 March 2024 https://doi.org/10.1002/9781119716846.ch4bBook Series:Organic Reaction Mechanisms Series AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onEmailFacebookTwitterLinkedInRedditWechat Summary Functionalized arenes and heterocycles continue to serve as essential compounds in industry and academic research. Electrophilic aromatic substitution (EAS) remains one of the most important processes for introducing the diverse array of functionality required for new applications, and novel synthetic methods and investigations into the underlying mechanisms of EAS reactions continue to receive much attention. There is a growing use of artificial intelligence and machine learning to assist in identifying likely products of reactions or the best conditions to apply in synthesis. Improved methods for halogenation continue to be an important area of investigation in EAS. Studies on the mechanisms of new bromination methods continue to receive attention. Mechanisms for reactions to introduce sulfur-containing functionality have appeared. Metals are key to many electrophilic substitution processes as catalysts or stoichiometric reagents, and C–H insertion reactions feature prominently. References Makosza , M. , Chem. – Eur. 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Oxidation and Reduction
Organic Reaction Mechanisms
,
2024
,
citations by CoLab: 0
Banerji K.K.


Molecular Rearrangements
Coxon J.M.
Chapter 11 Molecular Rearrangements J. M. Coxon, J. M. Coxon Department of Chemistry and Physics, University of Canterbury, Christchurch, New ZealandSearch for more papers by this author J. M. Coxon, J. M. Coxon Department of Chemistry and Physics, University of Canterbury, Christchurch, New ZealandSearch for more papers by this author Book Editor(s):Mark Moloney, Mark Moloney University of Oxford, Mansfield Road, Oxford, UK, OX1 3TA United KingdomSearch for more papers by this author First published: 15 March 2024 https://doi.org/10.1002/9781119716846.ch11Book Series:Organic Reaction Mechanisms Series AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onEmailFacebookTwitterLinkedInRedditWechat Summary A blue-light-induced [2,3]-sigmatropic rearrangement of sulfonium ylides has been reported from donor/acceptor diazoalkanes and propargyl sulfides to give functionalized allenes and is considered to occur via singlet carbene intermediates. A mechanism, named maleimide-assisted rearrangement and cycloaromatization, has been reported to trigger the reactivity of acyclic enediynes by a cascade 1,3-proton transfer processes to enable acyclic enediynes to undergo cycloaromatization. Computational studies have been reported to gain insights into the potential energy surfaces of competing Lewis-acid catalyzed carbonyl-ene, Prins, and carbonyl-olefin metathesis reactions. Computational studies on the origin of enantioselectivity in the semipinacol rearrangement of vinylogous alpha-ketol cocatalyzed by a cinchona-based primary amine and Bronsted acids indicate the reaction proceeds via complexation, nucleophilic addition, dehydration, carbon atom migration, enamine–imine tautomerization, imine hydrolysis, and Walden inversion. References Orlowska , K. , Rybicka-Jasinska , K. , Krajewski , P. , and Gryko , D. , Org. Lett. , 22 , 1018 ( 2020 ). 10.1021/acs.orglett.9b04560 CASPubMedWeb of Science®Google Scholar Yuan , H. 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J. , and Frongia , A. , Synthesis-Stuttgart , 53

Reactions of Aldehydes and Ketones and Their Derivatives
Organic Reaction Mechanisms
,
2024
,
citations by CoLab: 0
Moloney M.G.


Radical Reactions
Parsons A.F., Parsons T.F.
Chapter 13 Radical Reactions A. F. Parsons, A. F. Parsons Department of Chemistry, University of York, Heslington, York, UKSearch for more papers by this authorT. F. Parsons, T. F. Parsons Wyke Sixth Form College, Hull, UKSearch for more papers by this author A. F. Parsons, A. F. Parsons Department of Chemistry, University of York, Heslington, York, UKSearch for more papers by this authorT. F. Parsons, T. F. Parsons Wyke Sixth Form College, Hull, UKSearch for more papers by this author Book Editor(s):Mark Moloney, Mark Moloney University of Oxford, Mansfield Road, Oxford, UK, OX1 3TA United KingdomSearch for more papers by this author First published: 15 March 2024 https://doi.org/10.1002/9781119716846.ch13Book Series:Organic Reaction Mechanisms Series AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onEmailFacebookTwitterLinkedInRedditWechat Summary A review of photocatalytic strategies, involving radical intermediates of importance in organic synthesis, has appeared. The fact that photocatalytic cycles are composed of three steps, namely excitation, quenching, and finally restoration, is highlighted. The review has a particular emphasis on the restoration step, exploring how the deactivated form of the catalyst is converted back into the original state, which permits the cycle to start over again. It classifies photocatalytic processes according to what species is responsible for the restoration step, such as the substrate, an intermediate, or a sacrificial agent. The stereoselective bromoboration of acetylene with boron tribromide is investigated. The mechanism was studied by experiments and calculations, and besides the syn-addition mechanism (proceeding via a four-membered transition state) a radical and polar anti-addition mechanism was postulated. References Capaldo , L. , and Ravelli , D. , Eur. J. Org. Chem. , 2020 , 2783 (2020). 10.1002/ejoc.202000144 Google Scholar Lee , Y. and Kwon , M. S. , Eur. J. Org. Chem. , 2020 , 6028 (2020). 10.1002/ejoc.202000720 Google Scholar Yuan , Y. Q. , Majumder , S. , Yang , M. H. , and Guo , S. R. , Tetrahedron Lett. , 61 , 15106 ( 2020 ). Google Scholar Tang , H. T. , Jia , J. S. , and Pan , Y. M. , Org. Biomol. Chem. , 18 , 5315 ( 2020 ). 10.1039/D0OB01008A CASPubMedWeb of Science®Google Scholar Bartos , P. , Young , V. 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Addition Reactions: Cycloaddition
Dennis N.
Chapter 10 Addition Reactions: Cycloaddition N. Dennis, N. Dennis Stretton, Queensland, AustraliaSearch for more papers by this author N. Dennis, N. Dennis Stretton, Queensland, AustraliaSearch for more papers by this author Book Editor(s):Mark Moloney, Mark Moloney University of Oxford, Mansfield Road, Oxford, UK, OX1 3TA United KingdomSearch for more papers by this author First published: 15 March 2024 https://doi.org/10.1002/9781119716846.ch10Book Series:Organic Reaction Mechanisms Series AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onEmailFacebookTwitterLinkedInRedditWechat Summary A review describing the synthesis of chiral spirooxindoles with quaternary stereogenic centers via 1,3-dipolar cycloaddition, Diels–Alder, and nucleophilic heterocyclic carbene reactions has been reported. A review of the synthesis of isoxazolines via iminoyl radical-initiated intramolecular cyclization, intermolecular radical addition-initiated cyclization, intramolecular nucleophilic cyclization, [3+2]-cycloaddition, and [2+2+1]-cycloaddition is presented. Molecular electron density theory (MEDT) investigations of the [3+2]-cycloaddition reactions of E-azomethine imines and 2-sulfolene show that the reaction follows a non-concerted two-stage one-step molecular mechanism. MEDT has been used to investigate the Grignard reagent-mediated [3+2]-cycloaddition reaction of phenyl azide with ethynylbenzene in the presence of ethyl magnesium bromide. References Ramirez , M. , Li , W. F. , Lam , Y. H. , Ghosez , L. , and Houk , K. N. , J. Org. Chem. , 85 , 2597 ( 2020 ). 10.1021/acs.joc.9b03340 CASPubMedWeb of Science®Google Scholar Shi , Y. J. , Liu , X. J. , Han , Y. , Yan , P. , Bie , F. S. , and Cao , H. , Tetrahedron Lett. , 61 , 151752 ( 2020 ). Google Scholar McVeigh , M. 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Ligand‐Promoted Catalyzed Reactions
Organic Reaction Mechanisms
,
2024
,
citations by CoLab: 0
Bosque I., Gonzalez‐Gomez J.C.


Carbocations
Moreira V.M.
Chapter 5 Carbocations V. M. Moreira, V. M. Moreira Laboratory of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Coimbra, Portugal Centre for Neuroscience and Cell Biology, University of Coimbra, Portugal Centre for Innovative Biomedicine and Biotechnology, University of Coimbra, PortugalSearch for more papers by this author V. M. Moreira, V. M. Moreira Laboratory of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Coimbra, Portugal Centre for Neuroscience and Cell Biology, University of Coimbra, Portugal Centre for Innovative Biomedicine and Biotechnology, University of Coimbra, PortugalSearch for more papers by this author Book Editor(s):Mark Moloney, Mark Moloney University of Oxford, Mansfield Road, Oxford, UK, OX1 3TA United KingdomSearch for more papers by this author First published: 15 March 2024 https://doi.org/10.1002/9781119716846.ch5Book Series:Organic Reaction Mechanisms Series AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onEmailFacebookTwitterLinkedInRedditWechat Summary A density-functional theory study of the reaction of butadiene with the allyl cation, in the gas phase and dimethyl sulfoxide, has brought to focus the fact that the widths of pathways to competing products in a reaction may be more relevant for determining the selectivity than barrier heights. The intermediacy of carbocations in studies including zeolites continued to be a topic of interest. The reactivity of the benzyl carbocation with benzene as a weak base was studied by quantitative infrared spectroscopy. The interconversion of cyclopropylcarbinyl and cyclobutyl cations is revisited using the concept of conformational landscape. The observation of the model hydrogen migration in carbocations using molecular dynamics calculations suggested that hydrogen migration velocity decreases with stronger electrostatic interactions between the hydrogen and neighbouring groups (drag concept) and that this property may be exploited for rationalizing previous experimental results and designing novel reactions. References Frontier , A. J. and Hernandez , J. J. , Acc. Chem. Res. , 53 , 1822 ( 2020 ). 10.1021/acs.accounts.0c00284 CASPubMedWeb of Science®Google Scholar Tsuji , H. and Kawatsura , M. , Asian J. Org. 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Reactions of Carboxylic, Phosphoric, and Sulfonic Acids and Their Derivatives
Bedford C.T.
Chapter 2 Reactions of Carboxylic, Phosphoric, and Sulfonic Acids and Their Derivatives C. T. Bedford, C. T. Bedford Department of Chemistry, University College London, London, UKSearch for more papers by this author C. T. Bedford, C. T. Bedford Department of Chemistry, University College London, London, UKSearch for more papers by this author Book Editor(s):Mark Moloney, Mark Moloney University of Oxford, Mansfield Road, Oxford, UK, OX1 3TA United KingdomSearch for more papers by this author First published: 15 March 2024 https://doi.org/10.1002/9781119716846.ch2Book Series:Organic Reaction Mechanisms Series AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onEmailFacebookTwitterLinkedInRedditWechat Summary Access to both stereoisomers of P-stereogenic phosphonothioates is provided by the chemoselective- and stereoselective alcoholysis of bi-2-naphthyl phosphonothioates. An internal nucleophilic catalyst-mediated cyclization for the synthesis of medium-sized lactones and lactams can be illustrated by the conversion in 90% yield of a bicyclic 9-hydroxyacid (30) into the 10-membered lactone (33) in CHCl3 at r.t. (Scheme 11). Activation of the carboxylic acid grouping of (30) by propanephosphonic acid anhydride (T3P) and diisopropylethylamine prompts the attack of it by the strategically located pyridine to form the N-acylium ion (31) which facilitates attack at C=O by the OH group to generate a TI (32), collapse of which forms the 10-membered lactone (33). References Allcock , H. R. and Walsh , E. J. , J. Am. Chem. Soc. , 94 , 4538 ( 1972 ). 10.1021/ja00768a021 CASWeb of Science®Google Scholar Movahed , F. S. , Sawant , D. N. , Bagal , D. 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L. , Wille , U. , and Hutton , C. A. , Chem. Eur. J. , 27 , 1620 ( 2020 ). 10.1002/chem.202005035 PubMedWeb of Science®Google Scholar Foden , C. S. , Islam , S. , Fernandez-Garcia , C. , Maugeri , L. , Sheppard , T. D. , and Powner , M. W. , Science , 370 , 865 ( 2020 ). 10.1126/science.abd5680 CASPubMedWeb of Science®Google Scholar Canavelli , P. , Islam , S. , and Powner , M. W. , Nature , 571 , 546 ( 2019 ). 10.1038/s41586-019-1371-4 CASPubMedWeb of Science®Google Scholar Organic Reaction Mechanisms 2020 ReferencesRelatedInformation

Carbanions and Electrophilic Aliphatic Substitution
Birsa M.L.
Chapter 7 Carbanions and Electrophilic Aliphatic Substitution M. L. Birsa, M. L. Birsa Faculty of Chemistry, "Al. I. Cuza" University of Iasi, Iasi, RomaniaSearch for more papers by this author M. L. Birsa, M. L. Birsa Faculty of Chemistry, "Al. I. Cuza" University of Iasi, Iasi, RomaniaSearch for more papers by this author Book Editor(s):Mark Moloney, Mark Moloney University of Oxford, Mansfield Road, Oxford, UK, OX1 3TA United KingdomSearch for more papers by this author First published: 15 March 2024 https://doi.org/10.1002/9781119716846.ch7Book Series:Organic Reaction Mechanisms Series AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onEmailFacebookTwitterLinkedInRedditWechat Summary Structure, reactivity, and synthetic applications of sodium diisopropylamide in enolization and orthometallation reactions are reviewed. The transfer of the electrophilic fragment from cumene hydroperoxide to the Zr(IV)-bound enolate has been accompanied by a heterolytic O—O bond cleavage. The formation of a hydrogen bond between the amine hydrogen atom(s) of the salen ligand and the hydroxy group of cumene hydroperoxide played a significant role in stabilizing the stereocontrolled transition state and improving the enantioselectivity. C-Alkylation of potassium enolates with styrenes (CAKES) is one of the highlighted reactions. Base-catalyzed amide CAKES have been studied using a synergistic approach of computation and experimental kinetic studies. The Schlenk equilibrium for thiophene Grignard reagents has been studied using quantum chemical reaction discovery tools. A detailed surface reaction mechanism of zinc-promoted silylation of phenylacetylene and chlorosilane has been reported based on combined experimental characterizations and periodic DFT calculations. References Woltornist , R. A. , Ma , Y. , Algera , R. 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P. , ACS Catal. , 10 , 1256 ( 2020 ). 10.1021/acscatal.9b02040 CASWeb of Science®Google Scholar Chen , J. , Gu , H. Y. , Zhu , X. Y. , Nam , W. , and Wang , B. , Adv. Synth. Catal. , 362 , 2976 ( 2020 ). 10.1002/adsc.202000290 CASWeb of Science®Google Scholar Lozovskiy , S. V. and Vasilyev , A. V. , Adv. Synth. Catal. , 362 , 3121 ( 2020 ). 10.1002/adsc.202000534 CASWeb of Science®Google Scholar Curtis , E. R. , Hannigan , M. D. , Vitek , A. K. , and Zimmerman , P. M. , J. Phys. Chem. A , 124 , 1480 ( 2020 ). 10.1021/acs.jpca.9b09985 CASPubMedWeb of Science®Google Scholar Lauridsen , J. M. V. , Cho , S. Y. , Bae , H. Y. , and Lee , J. W. , Organometallics , 39 , 1652 ( 2020 ). 10.1021/acs.organomet.9b00838 Web of Science®Google Scholar Lim , S. , Cho , H. , Jeong , J. , Jang , M. , Kim , H. , Cho , S. H. , and Lee , E. , Org. Lett. , 22 , 7387 ( 2020 ). 10.1021/acs.orglett.0c02752 CASPubMedWeb of Science®Google Scholar Wang , W. F. , Lu , K. , Qin , Y. , Yao , W. W. , Yuan , D. 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K. , Synthesis-Stuttgart , 52 , 1147 ( 2020 ). 10.1055/s-0039-1690817 CASWeb of Science®Google Scholar Greene , M. A. , Liu , Y. D. , Sanzone , J. R. , and Woerpel , K. A. , Org. Lett. , 22 , 7518 ( 2020 ). 10.1021/acs.orglett.0c02711 CASPubMedWeb of Science®Google Scholar Zhang , Y. X. , Chen , Y. R. , Zhang , Z. G. , Liu , S. S. , and Shen , X. , Org. Lett. , 22 , 970 ( 2020 ). 10.1021/acs.orglett.9b04505 CASPubMedWeb of Science®Google Scholar Auth , T. , Koszinowski , K. , and O'Hair , R. A. J. , Organometallics , 39 , 25 ( 2020 ). 10.1021/acs.organomet.9b00521 CASWeb of Science®Google Scholar Vijayan , A. , Rao , D. N. , Radhakrishnan , K. V. , Lam , P. Y. S. , and Das , P. , Synthesis-Stuttgart , 53 , 805 ( 2021 ). 10.1055/s-0040-1705971 CASWeb of Science®Google Scholar Pineschi , M. , Eur. J. Org. Chem. , 2643 ( 2020 ). 10.1002/ejoc.201901853 Web of Science®Google Scholar Obst , M. F. , Gevorgyan , A. , Bayer , A. , and Hopmann , K. H. , Organometallics , 39 , 1545 ( 2020 ). 10.1021/acs.organomet.9b00710 CASWeb of Science®Google Scholar Daley , R. A. and Topczewski , J. J. , Synthesis-Stuttgart , 52 , 365 ( 2020 ). 10.1055/s-0039-1690769 CASWeb of Science®Google Scholar Becica , J. and Leitch , D. C. , Synlett , 32 , 641 ( 2021 ). 10.1055/a-1306-3228 CASWeb of Science®Google Scholar Orlandi , M. and Licini , G. , J. Org. Chem. , 85 , 11511 ( 2020 ). 10.1021/acs.joc.0c01768 CASPubMedWeb of Science®Google Scholar Tcyrulnikov , S. and Kozlowski , M. C. , J. Org. Chem. , 85 , 3465 ( 2020 ). 10.1021/acs.joc.9b03203 CASPubMedWeb of Science®Google Scholar Guo , T. , Ding , Y. L. , Zhou , L. L. , Xu , H. Y. , Loh , T. P. , and Wu , X. J. , ACS Catal. , 10 , 7262 ( 2020 ). 10.1021/acscatal.0c02414 CASWeb of Science®Google Scholar Zhao , B. , Shang , R. , Wang , G. Z. , Wang , S. H. , Chen , H. , and Fu , Y. , ACS Catal. , 10 , 1334 ( 2020 ). 10.1021/acscatal.9b04699 CASWeb of Science®Google Scholar Chen , Q. W. , Wu , S. 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Catal. , 362 , 3259 ( 2020 ). 10.1002/adsc.202000639 CASWeb of Science®Google Scholar Budagumpi , S. , Keri , R. S. , Achar , G. , and Brinda , K. N. , Adv. Synth. Catal. , 362 , 970 ( 2020 ). 10.1002/adsc.201900859 CASWeb of Science®Google Scholar Das , K. K. , Paul , S. , and Panda , S. , Org. Biomol. Chem. , 18 , 8939 ( 2020 ). 10.1039/D0OB01721C CASPubMedWeb of Science®Google Scholar Zhang , Z. , Ye , J. H. , Ju , T. , Liao , L. L. , Huang , H. , Gui , Y. Y. , Zhou , W. J. , and Yu , D. G. , ACS Catal. , 10 , 10871 ( 2020 ). 10.1021/acscatal.0c03127 CASWeb of Science®Google Scholar Moon , P. J. and Lundgren , R. J. , ACS Catal. , 10 , 1742 ( 2020 ). 10.1021/acscatal.9b04956 CASWeb of Science®Google Scholar Oller , J. , Saez , D. A. , and Vohringer-Martinez , E. , J. Phys. Chem. A , 124 , 849 ( 2020 ). 10.1021/acs.jpca.9b07012 CASPubMedWeb of Science®Google Scholar Li , F. Y. , Zhang , J. Z. , and Xia , F. , J. Phys. Chem. A , 124 , 2029 ( 2020 ). 10.1021/acs.jpca.9b11991 CASPubMedGoogle Scholar Sun , Z. C. and Cundari , T. R. , Phys. Chem. Chem. Phys. , 22 , 24320 ( 2020 ). 10.1039/D0CP04080K CASPubMedWeb of Science®Google Scholar Khedkar , A. and Roemelt , M. , Phys. Chem. Chem. Phys. , 22 , 17677 ( 2020 ). 10.1039/D0CP02834G CASPubMedWeb of Science®Google Scholar Alburquerque , P. R. , Ramachandran , B. R. , Junk , T. , and Karsili , T. N. V. , J. Phys. Chem. A , 124 , 2530 ( 2020 ). 10.1021/acs.jpca.9b10892 CASPubMedWeb of Science®Google Scholar Voronin , V. V. , Ledovskaya , M. S. , Rodygin , K. S. , and Ananikov , V. P. , Org. Chem. Front. , 7 , 1334 ( 2020 ). 10.1039/D0QO00202J CASWeb of Science®Google Scholar Zhu , C. J. , Kuniyil , R. , Jei , B. B. , and Ackermann , L. , ACS Catal. , 10 , 4444 ( 2020 ). 10.1021/acscatal.9b05413 CASWeb of Science®Google Scholar Stockhammer , L. , Schorgenhumer , J. , Mairhofer , C. , and Waser , M. , Eur. J. Org. Chem. , 82 ( 2021 ). Google Scholar Chen , M. Y. , Pannecoucke , X. , Jubault , P. , and Besset , T. , Org. Lett. , 22 , 7556 ( 2020 ). 10.1021/acs.orglett.0c02750 CASPubMedWeb of Science®Google Scholar Organic Reaction Mechanisms 2020 ReferencesRelatedInformation

Elimination Reactions
Birsa M.L.
Chapter 8 Elimination Reactions M. L. Birsa, M. L. Birsa Faculty of Chemistry, "Al. I. Cuza" University of Iasi, Iasi, RomaniaSearch for more papers by this author M. L. Birsa, M. L. Birsa Faculty of Chemistry, "Al. I. Cuza" University of Iasi, Iasi, RomaniaSearch for more papers by this author Book Editor(s):Mark Moloney, Mark Moloney University of Oxford, Mansfield Road, Oxford, UK, OX1 3TA United KingdomSearch for more papers by this author First published: 15 March 2024 https://doi.org/10.1002/9781119716846.ch8Book Series:Organic Reaction Mechanisms Series AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onEmailFacebookTwitterLinkedInRedditWechat Summary A unified framework for understanding nucleophilicity and protophilicity in the S N 2/E2 competition is described. The first palladium-N-heterocyclic carbene catalyzed Suzuki cross-coupling of aryl sulfoxides with phenylboronic acids is established. Density functional theory calculations have indicated that the reaction occurred through oxidative addition, transmetalation, and reductive elimination to provide the final coupling product. The synthesis of various functionalized alkynes from non-alkyne sources is overviewed in terms of its scope, limitations, and recent developments, especially elimination reactions. The mechanism of the photoreaction of azidomethyl methyl sulfide is investigated by a combined approach using low-temperature matrix isolation FTIR spectroscopy in conjunction with two theoretical methods. Lewis acid-assisted palladium-catalyzed dealkoxylation of N-alkoxyamides has been developed. The reaction proceeded with various N-alkoxyamides including a sulfonamide and a phosphoramide, in the absence of an external reductant. References Vermeeren , P. , Hansen , T. , Jansen , P. , Swart , M. , Hamlin , T. A. , and Bickelhaupt , F. M. , Chem. – Eur. 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|
Hebrew University of Jerusalem
15 publications, 1.24%
|
|
University of Lisbon
15 publications, 1.24%
|
|
University of Melbourne
15 publications, 1.24%
|
|
City University of Hong Kong
15 publications, 1.24%
|
|
Hong Kong Polytechnic University
14 publications, 1.16%
|
|
Federal University of Rio Grande do Sul
13 publications, 1.07%
|
|
University of Cape Town
12 publications, 0.99%
|
|
Seoul National University
11 publications, 0.91%
|
|
McGill University
11 publications, 0.91%
|
|
University of Tartu
11 publications, 0.91%
|
|
University of Turku
10 publications, 0.83%
|
|
Chinese University of Hong Kong
10 publications, 0.83%
|
|
University of Bristol
10 publications, 0.83%
|
|
University of Amsterdam
10 publications, 0.83%
|
|
University College Dublin
10 publications, 0.83%
|
|
Burdur Mehmet Akif Ersoy University
9 publications, 0.74%
|
|
University of Haifa
9 publications, 0.74%
|
|
University of Oxford
9 publications, 0.74%
|
|
University of Western Australia
9 publications, 0.74%
|
|
Flinders University
9 publications, 0.74%
|
|
Education University of Hong Kong
9 publications, 0.74%
|
|
University of Hong Kong
9 publications, 0.74%
|
|
University of Macau
9 publications, 0.74%
|
|
Cardiff University
9 publications, 0.74%
|
|
Stockholm University
8 publications, 0.66%
|
|
Stellenbosch University
8 publications, 0.66%
|
|
Columbia University
8 publications, 0.66%
|
|
University of California, Santa Barbara
8 publications, 0.66%
|
|
Trinity College Dublin
8 publications, 0.66%
|
|
University of British Columbia
8 publications, 0.66%
|
|
University of Groningen
8 publications, 0.66%
|
|
University of Tübingen
7 publications, 0.58%
|
|
Tel Aviv University
7 publications, 0.58%
|
|
Ghent University
7 publications, 0.58%
|
|
University of Adelaide
7 publications, 0.58%
|
|
Dalhousie University
7 publications, 0.58%
|
|
Panteion University
7 publications, 0.58%
|
|
University of North Carolina at Chapel Hill
7 publications, 0.58%
|
|
Suleyman Demirel University
6 publications, 0.5%
|
|
East China Normal University
6 publications, 0.5%
|
|
University of Copenhagen
6 publications, 0.5%
|
|
University of Manchester
6 publications, 0.5%
|
|
London School of Economics and Political Science
6 publications, 0.5%
|
|
Queensland University of Technology
6 publications, 0.5%
|
|
Kyung Hee University
6 publications, 0.5%
|
|
Lingnan University
6 publications, 0.5%
|
|
Ewha Womans University
6 publications, 0.5%
|
|
Ohio State University
6 publications, 0.5%
|
|
University of Seville
6 publications, 0.5%
|
|
University of Vechta
6 publications, 0.5%
|
|
University of Texas at Arlington
6 publications, 0.5%
|
|
Middle East Technical University
5 publications, 0.41%
|
|
University Putra Malaysia
5 publications, 0.41%
|
|
University of Gothenburg
5 publications, 0.41%
|
|
Sapienza University of Rome
5 publications, 0.41%
|
|
South China Normal University
5 publications, 0.41%
|
|
Western Sydney University
5 publications, 0.41%
|
|
University of Cambridge
5 publications, 0.41%
|
|
Manchester Metropolitan University
5 publications, 0.41%
|
|
National University of Singapore
5 publications, 0.41%
|
|
Southwestern University of Finance and Economics
5 publications, 0.41%
|
|
University of Sydney
5 publications, 0.41%
|
|
University of Glasgow
5 publications, 0.41%
|
|
Kore University of Enna
5 publications, 0.41%
|
|
University of Otago
5 publications, 0.41%
|
|
Massey University
5 publications, 0.41%
|
|
Monash University
5 publications, 0.41%
|
|
University of Queensland
5 publications, 0.41%
|
|
University of Ibadan
5 publications, 0.41%
|
|
Sungkyunkwan University
5 publications, 0.41%
|
|
Case Western Reserve University
5 publications, 0.41%
|
|
Duke University
5 publications, 0.41%
|
|
Hankuk University of Foreign Studies
5 publications, 0.41%
|
|
Vrije Universiteit Brussel
5 publications, 0.41%
|
|
Leibniz Institute for Research and Information in Education
5 publications, 0.41%
|
|
McMaster University
5 publications, 0.41%
|
|
Utrecht University
5 publications, 0.41%
|
|
University of Wuppertal
5 publications, 0.41%
|
|
University of Granada
5 publications, 0.41%
|
|
University of Oviedo
5 publications, 0.41%
|
|
Hacettepe University
4 publications, 0.33%
|
|
Agri Ibrahim Cecen University
4 publications, 0.33%
|
|
Indian Statistical Institute
4 publications, 0.33%
|
|
Zhejiang University
4 publications, 0.33%
|
|
Xi'an Jiaotong University
4 publications, 0.33%
|
|
Pamukkale University
4 publications, 0.33%
|
|
Karolinska Institute
4 publications, 0.33%
|
|
Tampere University
4 publications, 0.33%
|
|
Karlstad University
4 publications, 0.33%
|
|
Central China Normal University
4 publications, 0.33%
|
|
Shaanxi Normal University
4 publications, 0.33%
|
|
Northeast Normal University
4 publications, 0.33%
|
|
Shenzhen University
4 publications, 0.33%
|
|
Show all (70 more) | |
5
10
15
20
25
30
35
40
45
50
|
Publishing organizations in 5 years
5
10
15
20
25
|
|
University of Girona
23 publications, 4.54%
|
|
Universidad Andrés Bello
16 publications, 3.16%
|
|
Beijing Normal University
14 publications, 2.76%
|
|
University of Melbourne
10 publications, 1.97%
|
|
Burdur Mehmet Akif Ersoy University
9 publications, 1.78%
|
|
University of Cape Town
9 publications, 1.78%
|
|
Federal University of Rio Grande do Sul
9 publications, 1.78%
|
|
University of Lisbon
8 publications, 1.58%
|
|
University of the Western Cape
7 publications, 1.38%
|
|
Ghent University
6 publications, 1.18%
|
|
University of Manchester
6 publications, 1.18%
|
|
Chinese University of Hong Kong
6 publications, 1.18%
|
|
Panteion University
6 publications, 1.18%
|
|
Hebrew University of Jerusalem
5 publications, 0.99%
|
|
University of New South Wales
5 publications, 0.99%
|
|
University of Turku
5 publications, 0.99%
|
|
University of Cambridge
5 publications, 0.99%
|
|
National University of Singapore
5 publications, 0.99%
|
|
Southwestern University of Finance and Economics
5 publications, 0.99%
|
|
University of Glasgow
5 publications, 0.99%
|
|
Monash University
5 publications, 0.99%
|
|
Flinders University
5 publications, 0.99%
|
|
University of Ibadan
5 publications, 0.99%
|
|
University of Wuppertal
5 publications, 0.99%
|
|
University of Oviedo
5 publications, 0.99%
|
|
University of Tartu
5 publications, 0.99%
|
|
Hacettepe University
4 publications, 0.79%
|
|
Agri Ibrahim Cecen University
4 publications, 0.79%
|
|
University of Copenhagen
4 publications, 0.79%
|
|
London School of Economics and Political Science
4 publications, 0.79%
|
|
Seoul National University
4 publications, 0.79%
|
|
Sungkyunkwan University
4 publications, 0.79%
|
|
University of Hong Kong
4 publications, 0.79%
|
|
Trinity College Dublin
4 publications, 0.79%
|
|
McGill University
4 publications, 0.79%
|
|
University of Macau
4 publications, 0.79%
|
|
University of Amsterdam
4 publications, 0.79%
|
|
Middle East Technical University
3 publications, 0.59%
|
|
Ataturk University
3 publications, 0.59%
|
|
Akdeniz University
3 publications, 0.59%
|
|
International Institute for Population Sciences
3 publications, 0.59%
|
|
Zhejiang University
3 publications, 0.59%
|
|
Fudan University
3 publications, 0.59%
|
|
Kilis 7 Aralık University
3 publications, 0.59%
|
|
Technical University of Munich
3 publications, 0.59%
|
|
Tel Hai Academic College
3 publications, 0.59%
|
|
Shaanxi Normal University
3 publications, 0.59%
|
|
Shenzhen University
3 publications, 0.59%
|
|
Oslo Metropolitan University
3 publications, 0.59%
|
|
Auckland University of Technology
3 publications, 0.59%
|
|
Stellenbosch University
3 publications, 0.59%
|
|
Columbia University
3 publications, 0.59%
|
|
University of Johannesburg
3 publications, 0.59%
|
|
University of California, Los Angeles
3 publications, 0.59%
|
|
Vrije Universiteit Brussel
3 publications, 0.59%
|
|
University of Bristol
3 publications, 0.59%
|
|
Leibniz Institute for Educational Trajectories
3 publications, 0.59%
|
|
Pablo de Olavide University
3 publications, 0.59%
|
|
University of Seville
3 publications, 0.59%
|
|
Utrecht University
3 publications, 0.59%
|
|
University of Groningen
3 publications, 0.59%
|
|
University of Vechta
3 publications, 0.59%
|
|
University of Toronto
3 publications, 0.59%
|
|
University College Dublin
3 publications, 0.59%
|
|
Ankara University
2 publications, 0.39%
|
|
Marmara University
2 publications, 0.39%
|
|
Istanbul University Cerrahpasa
2 publications, 0.39%
|
|
Jadavpur University
2 publications, 0.39%
|
|
Erciyes University
2 publications, 0.39%
|
|
Mersin University
2 publications, 0.39%
|
|
Afyon Kocatepe University
2 publications, 0.39%
|
|
Indian Statistical Institute
2 publications, 0.39%
|
|
Tel Aviv University
2 publications, 0.39%
|
|
Utkal University
2 publications, 0.39%
|
|
Xi'an Jiaotong University
2 publications, 0.39%
|
|
Pamukkale University
2 publications, 0.39%
|
|
Giresun University
2 publications, 0.39%
|
|
Katholieke Universiteit Leuven
2 publications, 0.39%
|
|
Universidade Lusíada de Lisboa
2 publications, 0.39%
|
|
University of Haifa
2 publications, 0.39%
|
|
Pontificia Universidad Católica de Valparaíso
2 publications, 0.39%
|
|
Nanjing University
2 publications, 0.39%
|
|
Umeå University
2 publications, 0.39%
|
|
Sapienza University of Rome
2 publications, 0.39%
|
|
Australian National University
2 publications, 0.39%
|
|
Sultan Qaboos University
2 publications, 0.39%
|
|
Autonomous University of Barcelona
2 publications, 0.39%
|
|
University of Turin
2 publications, 0.39%
|
|
Nanyang Technological University
2 publications, 0.39%
|
|
University of Oxford
2 publications, 0.39%
|
|
Åbo Akademi University
2 publications, 0.39%
|
|
Manchester Metropolitan University
2 publications, 0.39%
|
|
London School of Hygiene & Tropical Medicine
2 publications, 0.39%
|
|
National Chengchi University
2 publications, 0.39%
|
|
National Taipei University of Technology
2 publications, 0.39%
|
|
University of Auckland
2 publications, 0.39%
|
|
University of Queensland
2 publications, 0.39%
|
|
University of Western Australia
2 publications, 0.39%
|
|
University of Adelaide
2 publications, 0.39%
|
|
Griffith University
2 publications, 0.39%
|
|
Show all (70 more) | |
5
10
15
20
25
|
Publishing countries
50
100
150
200
250
|
|
USA
|
USA, 205, 16.93%
USA
205 publications, 16.93%
|
China
|
China, 149, 12.3%
China
149 publications, 12.3%
|
United Kingdom
|
United Kingdom, 113, 9.33%
United Kingdom
113 publications, 9.33%
|
Spain
|
Spain, 105, 8.67%
Spain
105 publications, 8.67%
|
Australia
|
Australia, 79, 6.52%
Australia
79 publications, 6.52%
|
Canada
|
Canada, 60, 4.95%
Canada
60 publications, 4.95%
|
Turkey
|
Turkey, 58, 4.79%
Turkey
58 publications, 4.79%
|
Germany
|
Germany, 55, 4.54%
Germany
55 publications, 4.54%
|
Republic of Korea
|
Republic of Korea, 48, 3.96%
Republic of Korea
48 publications, 3.96%
|
Chile
|
Chile, 43, 3.55%
Chile
43 publications, 3.55%
|
Italy
|
Italy, 42, 3.47%
Italy
42 publications, 3.47%
|
South Africa
|
South Africa, 41, 3.39%
South Africa
41 publications, 3.39%
|
Israel
|
Israel, 38, 3.14%
Israel
38 publications, 3.14%
|
Netherlands
|
Netherlands, 34, 2.81%
Netherlands
34 publications, 2.81%
|
Sweden
|
Sweden, 29, 2.39%
Sweden
29 publications, 2.39%
|
Portugal
|
Portugal, 27, 2.23%
Portugal
27 publications, 2.23%
|
Brazil
|
Brazil, 25, 2.06%
Brazil
25 publications, 2.06%
|
India
|
India, 25, 2.06%
India
25 publications, 2.06%
|
Ireland
|
Ireland, 25, 2.06%
Ireland
25 publications, 2.06%
|
Finland
|
Finland, 24, 1.98%
Finland
24 publications, 1.98%
|
Norway
|
Norway, 19, 1.57%
Norway
19 publications, 1.57%
|
Belgium
|
Belgium, 15, 1.24%
Belgium
15 publications, 1.24%
|
Switzerland
|
Switzerland, 15, 1.24%
Switzerland
15 publications, 1.24%
|
France
|
France, 14, 1.16%
France
14 publications, 1.16%
|
Estonia
|
Estonia, 11, 0.91%
Estonia
11 publications, 0.91%
|
New Zealand
|
New Zealand, 11, 0.91%
New Zealand
11 publications, 0.91%
|
Iran
|
Iran, 9, 0.74%
Iran
9 publications, 0.74%
|
Malaysia
|
Malaysia, 9, 0.74%
Malaysia
9 publications, 0.74%
|
Nigeria
|
Nigeria, 9, 0.74%
Nigeria
9 publications, 0.74%
|
Poland
|
Poland, 9, 0.74%
Poland
9 publications, 0.74%
|
Philippines
|
Philippines, 9, 0.74%
Philippines
9 publications, 0.74%
|
Denmark
|
Denmark, 8, 0.66%
Denmark
8 publications, 0.66%
|
Colombia
|
Colombia, 8, 0.66%
Colombia
8 publications, 0.66%
|
Pakistan
|
Pakistan, 8, 0.66%
Pakistan
8 publications, 0.66%
|
Romania
|
Romania, 8, 0.66%
Romania
8 publications, 0.66%
|
Singapore
|
Singapore, 8, 0.66%
Singapore
8 publications, 0.66%
|
Ethiopia
|
Ethiopia, 8, 0.66%
Ethiopia
8 publications, 0.66%
|
Ghana
|
Ghana, 7, 0.58%
Ghana
7 publications, 0.58%
|
Greece
|
Greece, 7, 0.58%
Greece
7 publications, 0.58%
|
Indonesia
|
Indonesia, 7, 0.58%
Indonesia
7 publications, 0.58%
|
Luxembourg
|
Luxembourg, 6, 0.5%
Luxembourg
6 publications, 0.5%
|
Bangladesh
|
Bangladesh, 5, 0.41%
Bangladesh
5 publications, 0.41%
|
Mexico
|
Mexico, 5, 0.41%
Mexico
5 publications, 0.41%
|
Vietnam
|
Vietnam, 4, 0.33%
Vietnam
4 publications, 0.33%
|
Slovenia
|
Slovenia, 4, 0.33%
Slovenia
4 publications, 0.33%
|
Uganda
|
Uganda, 4, 0.33%
Uganda
4 publications, 0.33%
|
Croatia
|
Croatia, 4, 0.33%
Croatia
4 publications, 0.33%
|
Ecuador
|
Ecuador, 4, 0.33%
Ecuador
4 publications, 0.33%
|
Japan
|
Japan, 4, 0.33%
Japan
4 publications, 0.33%
|
Russia
|
Russia, 3, 0.25%
Russia
3 publications, 0.25%
|
Austria
|
Austria, 3, 0.25%
Austria
3 publications, 0.25%
|
Albania
|
Albania, 3, 0.25%
Albania
3 publications, 0.25%
|
Algeria
|
Algeria, 3, 0.25%
Algeria
3 publications, 0.25%
|
Latvia
|
Latvia, 3, 0.25%
Latvia
3 publications, 0.25%
|
UAE
|
UAE, 3, 0.25%
UAE
3 publications, 0.25%
|
Palestine
|
Palestine, 3, 0.25%
Palestine
3 publications, 0.25%
|
Peru
|
Peru, 3, 0.25%
Peru
3 publications, 0.25%
|
Czech Republic
|
Czech Republic, 3, 0.25%
Czech Republic
3 publications, 0.25%
|
Kazakhstan
|
Kazakhstan, 2, 0.17%
Kazakhstan
2 publications, 0.17%
|
Argentina
|
Argentina, 2, 0.17%
Argentina
2 publications, 0.17%
|
Bosnia and Herzegovina
|
Bosnia and Herzegovina, 2, 0.17%
Bosnia and Herzegovina
2 publications, 0.17%
|
Zambia
|
Zambia, 2, 0.17%
Zambia
2 publications, 0.17%
|
Iceland
|
Iceland, 2, 0.17%
Iceland
2 publications, 0.17%
|
Lebanon
|
Lebanon, 2, 0.17%
Lebanon
2 publications, 0.17%
|
Lithuania
|
Lithuania, 2, 0.17%
Lithuania
2 publications, 0.17%
|
Oman
|
Oman, 2, 0.17%
Oman
2 publications, 0.17%
|
Thailand
|
Thailand, 2, 0.17%
Thailand
2 publications, 0.17%
|
Tunisia
|
Tunisia, 2, 0.17%
Tunisia
2 publications, 0.17%
|
Azerbaijan
|
Azerbaijan, 1, 0.08%
Azerbaijan
1 publication, 0.08%
|
Armenia
|
Armenia, 1, 0.08%
Armenia
1 publication, 0.08%
|
Botswana
|
Botswana, 1, 0.08%
Botswana
1 publication, 0.08%
|
Burkina Faso
|
Burkina Faso, 1, 0.08%
Burkina Faso
1 publication, 0.08%
|
Hungary
|
Hungary, 1, 0.08%
Hungary
1 publication, 0.08%
|
Greenland
|
Greenland, 1, 0.08%
Greenland
1 publication, 0.08%
|
Egypt
|
Egypt, 1, 0.08%
Egypt
1 publication, 0.08%
|
Zimbabwe
|
Zimbabwe, 1, 0.08%
Zimbabwe
1 publication, 0.08%
|
Cambodia
|
Cambodia, 1, 0.08%
Cambodia
1 publication, 0.08%
|
Qatar
|
Qatar, 1, 0.08%
Qatar
1 publication, 0.08%
|
Kyrgyzstan
|
Kyrgyzstan, 1, 0.08%
Kyrgyzstan
1 publication, 0.08%
|
Morocco
|
Morocco, 1, 0.08%
Morocco
1 publication, 0.08%
|
Mongolia
|
Mongolia, 1, 0.08%
Mongolia
1 publication, 0.08%
|
North Macedonia
|
North Macedonia, 1, 0.08%
North Macedonia
1 publication, 0.08%
|
Senegal
|
Senegal, 1, 0.08%
Senegal
1 publication, 0.08%
|
Serbia
|
Serbia, 1, 0.08%
Serbia
1 publication, 0.08%
|
Slovakia
|
Slovakia, 1, 0.08%
Slovakia
1 publication, 0.08%
|
Tanzania
|
Tanzania, 1, 0.08%
Tanzania
1 publication, 0.08%
|
Tonga
|
Tonga, 1, 0.08%
Tonga
1 publication, 0.08%
|
Trinidad and Tobago
|
Trinidad and Tobago, 1, 0.08%
Trinidad and Tobago
1 publication, 0.08%
|
Fiji
|
Fiji, 1, 0.08%
Fiji
1 publication, 0.08%
|
Sri Lanka
|
Sri Lanka, 1, 0.08%
Sri Lanka
1 publication, 0.08%
|
Show all (60 more) | |
50
100
150
200
250
|
Publishing countries in 5 years
10
20
30
40
50
60
70
|
|
China
|
China, 62, 12.23%
China
62 publications, 12.23%
|
Spain
|
Spain, 54, 10.65%
Spain
54 publications, 10.65%
|
USA
|
USA, 52, 10.26%
USA
52 publications, 10.26%
|
Turkey
|
Turkey, 43, 8.48%
Turkey
43 publications, 8.48%
|
United Kingdom
|
United Kingdom, 41, 8.09%
United Kingdom
41 publications, 8.09%
|
Chile
|
Chile, 33, 6.51%
Chile
33 publications, 6.51%
|
Australia
|
Australia, 29, 5.72%
Australia
29 publications, 5.72%
|
Germany
|
Germany, 17, 3.35%
Germany
17 publications, 3.35%
|
India
|
India, 17, 3.35%
India
17 publications, 3.35%
|
Canada
|
Canada, 17, 3.35%
Canada
17 publications, 3.35%
|
Brazil
|
Brazil, 16, 3.16%
Brazil
16 publications, 3.16%
|
Republic of Korea
|
Republic of Korea, 16, 3.16%
Republic of Korea
16 publications, 3.16%
|
South Africa
|
South Africa, 16, 3.16%
South Africa
16 publications, 3.16%
|
Portugal
|
Portugal, 13, 2.56%
Portugal
13 publications, 2.56%
|
Israel
|
Israel, 13, 2.56%
Israel
13 publications, 2.56%
|
Ireland
|
Ireland, 10, 1.97%
Ireland
10 publications, 1.97%
|
Belgium
|
Belgium, 9, 1.78%
Belgium
9 publications, 1.78%
|
Italy
|
Italy, 9, 1.78%
Italy
9 publications, 1.78%
|
Netherlands
|
Netherlands, 9, 1.78%
Netherlands
9 publications, 1.78%
|
Finland
|
Finland, 8, 1.58%
Finland
8 publications, 1.58%
|
Singapore
|
Singapore, 7, 1.38%
Singapore
7 publications, 1.38%
|
Ghana
|
Ghana, 6, 1.18%
Ghana
6 publications, 1.18%
|
Greece
|
Greece, 6, 1.18%
Greece
6 publications, 1.18%
|
Nigeria
|
Nigeria, 6, 1.18%
Nigeria
6 publications, 1.18%
|
Sweden
|
Sweden, 6, 1.18%
Sweden
6 publications, 1.18%
|
Ethiopia
|
Ethiopia, 6, 1.18%
Ethiopia
6 publications, 1.18%
|
France
|
France, 5, 0.99%
France
5 publications, 0.99%
|
Estonia
|
Estonia, 5, 0.99%
Estonia
5 publications, 0.99%
|
Denmark
|
Denmark, 5, 0.99%
Denmark
5 publications, 0.99%
|
Iran
|
Iran, 5, 0.99%
Iran
5 publications, 0.99%
|
Norway
|
Norway, 5, 0.99%
Norway
5 publications, 0.99%
|
Pakistan
|
Pakistan, 5, 0.99%
Pakistan
5 publications, 0.99%
|
Bangladesh
|
Bangladesh, 4, 0.79%
Bangladesh
4 publications, 0.79%
|
Indonesia
|
Indonesia, 4, 0.79%
Indonesia
4 publications, 0.79%
|
New Zealand
|
New Zealand, 4, 0.79%
New Zealand
4 publications, 0.79%
|
Poland
|
Poland, 4, 0.79%
Poland
4 publications, 0.79%
|
Romania
|
Romania, 4, 0.79%
Romania
4 publications, 0.79%
|
Ecuador
|
Ecuador, 4, 0.79%
Ecuador
4 publications, 0.79%
|
Luxembourg
|
Luxembourg, 3, 0.59%
Luxembourg
3 publications, 0.59%
|
Mexico
|
Mexico, 3, 0.59%
Mexico
3 publications, 0.59%
|
Switzerland
|
Switzerland, 3, 0.59%
Switzerland
3 publications, 0.59%
|
Japan
|
Japan, 3, 0.59%
Japan
3 publications, 0.59%
|
Russia
|
Russia, 2, 0.39%
Russia
2 publications, 0.39%
|
Austria
|
Austria, 2, 0.39%
Austria
2 publications, 0.39%
|
Albania
|
Albania, 2, 0.39%
Albania
2 publications, 0.39%
|
Argentina
|
Argentina, 2, 0.39%
Argentina
2 publications, 0.39%
|
Vietnam
|
Vietnam, 2, 0.39%
Vietnam
2 publications, 0.39%
|
Colombia
|
Colombia, 2, 0.39%
Colombia
2 publications, 0.39%
|
Latvia
|
Latvia, 2, 0.39%
Latvia
2 publications, 0.39%
|
Oman
|
Oman, 2, 0.39%
Oman
2 publications, 0.39%
|
Peru
|
Peru, 2, 0.39%
Peru
2 publications, 0.39%
|
Thailand
|
Thailand, 2, 0.39%
Thailand
2 publications, 0.39%
|
Kazakhstan
|
Kazakhstan, 1, 0.2%
Kazakhstan
1 publication, 0.2%
|
Azerbaijan
|
Azerbaijan, 1, 0.2%
Azerbaijan
1 publication, 0.2%
|
Algeria
|
Algeria, 1, 0.2%
Algeria
1 publication, 0.2%
|
Armenia
|
Armenia, 1, 0.2%
Armenia
1 publication, 0.2%
|
Bosnia and Herzegovina
|
Bosnia and Herzegovina, 1, 0.2%
Bosnia and Herzegovina
1 publication, 0.2%
|
Botswana
|
Botswana, 1, 0.2%
Botswana
1 publication, 0.2%
|
Hungary
|
Hungary, 1, 0.2%
Hungary
1 publication, 0.2%
|
Zambia
|
Zambia, 1, 0.2%
Zambia
1 publication, 0.2%
|
Kyrgyzstan
|
Kyrgyzstan, 1, 0.2%
Kyrgyzstan
1 publication, 0.2%
|
Lebanon
|
Lebanon, 1, 0.2%
Lebanon
1 publication, 0.2%
|
Lithuania
|
Lithuania, 1, 0.2%
Lithuania
1 publication, 0.2%
|
Malaysia
|
Malaysia, 1, 0.2%
Malaysia
1 publication, 0.2%
|
Morocco
|
Morocco, 1, 0.2%
Morocco
1 publication, 0.2%
|
Mongolia
|
Mongolia, 1, 0.2%
Mongolia
1 publication, 0.2%
|
UAE
|
UAE, 1, 0.2%
UAE
1 publication, 0.2%
|
Palestine
|
Palestine, 1, 0.2%
Palestine
1 publication, 0.2%
|
North Macedonia
|
North Macedonia, 1, 0.2%
North Macedonia
1 publication, 0.2%
|
Slovakia
|
Slovakia, 1, 0.2%
Slovakia
1 publication, 0.2%
|
Tanzania
|
Tanzania, 1, 0.2%
Tanzania
1 publication, 0.2%
|
Tonga
|
Tonga, 1, 0.2%
Tonga
1 publication, 0.2%
|
Trinidad and Tobago
|
Trinidad and Tobago, 1, 0.2%
Trinidad and Tobago
1 publication, 0.2%
|
Uganda
|
Uganda, 1, 0.2%
Uganda
1 publication, 0.2%
|
Fiji
|
Fiji, 1, 0.2%
Fiji
1 publication, 0.2%
|
Philippines
|
Philippines, 1, 0.2%
Philippines
1 publication, 0.2%
|
Croatia
|
Croatia, 1, 0.2%
Croatia
1 publication, 0.2%
|
Czech Republic
|
Czech Republic, 1, 0.2%
Czech Republic
1 publication, 0.2%
|
Sri Lanka
|
Sri Lanka, 1, 0.2%
Sri Lanka
1 publication, 0.2%
|
Show all (49 more) | |
10
20
30
40
50
60
70
|
4 profile journal articles
Siongers Jessy
19 publications,
83 citations
h-index: 5
2 profile journal articles
A Jody
23 publications,
504 citations
h-index: 12
1 profile journal article
Das Sumonkanti
30 publications,
225 citations
h-index: 10