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volume 83 issue 10 pages 885-985

Development of new methods in modern selective organic synthesis: Preparation of functionalized molecules with atomic precision

L L Khemchyan
Yu V Ivanova
V. I. Bukhtiyarov
A M Sorokin
A V Medvedko
V N Nuriev
V. V. Levin
I. V. Koptyug
K V Kovtunov
V V Zhivonitko
V.A Likholobov
A. V. Romanenko
P.A Simonov
V G Nenajdenko
O I Shmatova
V M Muzalevskiy
M S Nechaev
A F Asachenko
P B Dzhevakov
D V Vorobyeva
M A Topchiy
M. A. Zotova
A A Rempel'
A A Valeeva
A.Yu Stakheev
O V Turova
I S Mashkovsky
S. V. Sysolyatin
V V Malykhin
G. A. Bukhtiyarova
A O Terentev
Publication typeJournal Article
Publication date2014-10-31
scimago Q1
wos Q1
SJR0.811
CiteScore12.9
Impact factor6.0
ISSN0036021X, 14684837
General Chemistry
Abstract
The challenges of the modern society and the growing demand of high-technology sectors of industrial production bring about a new phase in the development of organic synthesis. A cutting edge of modern synthetic methods is introduction of functional groups and more complex structural units into organic molecules with unprecedented control over the course of chemical transformation. Analysis of the state-of-the-art achievements in selective organic synthesis indicates the appearance of a new trend — the synthesis of organic molecules, biologically active compounds, pharmaceutical substances and smart materials with absolute selectivity. Most advanced approaches to organic synthesis anticipated in the near future can be defined as 'atomic precision' in chemical reactions. The present review considers selective methods of organic synthesis suitable for transformation of complex functionalized molecules under mild conditions. Selected key trends in the modern organic synthesis are considered including the preparation of organofluorine compounds, catalytic cross-coupling and oxidative cross-coupling reactions, atom-economic addition reactions, methathesis processes, oxidation and reduction reactions, synthesis of heterocyclic compounds, design of new homogeneous and heterogeneous catalytic systems, application of photocatalysis, scaling up synthetic procedures to industrial level and development of new approaches to investigation of mechanisms of catalytic reactions. The bibliography includes 840 references.
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Ananikov V. P. et al. Development of new methods in modern selective organic synthesis: Preparation of functionalized molecules with atomic precision // Russian Chemical Reviews. 2014. Vol. 83. No. 10. pp. 885-985.
GOST all authors (up to 50) Copy
Ananikov V. P., Khemchyan L. L., Ivanova Yu. V., Bukhtiyarov V. I., Sorokin A. M., Prosvirin I. P., Vatsadze S. Z., Medvedko A. V., Nuriev V. N., Dilman A. D., Levin V. V., Koptyug I. V., Kovtunov K. V., Zhivonitko V. V., Likholobov V., Romanenko A. V., Simonov P., Nenajdenko V. G., Shmatova O. I., Muzalevskiy V. M., Nechaev M. S., Asachenko A. F., Morozov O. S., Dzhevakov P. B., Osipov S. N., Vorobyeva D. V., Topchiy M. A., Zotova M. A., Ponomarenko S. A., Borshchev O. V., Luponosov Yu. N., Rempel' A. A., Valeeva A. A., Stakheev A., Turova O. V., Mashkovsky I. S., Sysolyatin S. V., Malykhin V. V., Bukhtiyarova G. A., Terentev A. O., Krylov I. B. Development of new methods in modern selective organic synthesis: Preparation of functionalized molecules with atomic precision // Russian Chemical Reviews. 2014. Vol. 83. No. 10. pp. 885-985.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1070/RC2014v83n10ABEH004471
UR - https://doi.org/10.1070/RC2014v83n10ABEH004471
TI - Development of new methods in modern selective organic synthesis: Preparation of functionalized molecules with atomic precision
T2 - Russian Chemical Reviews
AU - Ananikov, V P
AU - Khemchyan, L L
AU - Ivanova, Yu V
AU - Bukhtiyarov, V. I.
AU - Sorokin, A M
AU - Prosvirin, I P
AU - Vatsadze, S. Z.
AU - Medvedko, A V
AU - Nuriev, V N
AU - Dilman, A. D.
AU - Levin, V. V.
AU - Koptyug, I. V.
AU - Kovtunov, K V
AU - Zhivonitko, V V
AU - Likholobov, V.A
AU - Romanenko, A. V.
AU - Simonov, P.A
AU - Nenajdenko, V G
AU - Shmatova, O I
AU - Muzalevskiy, V M
AU - Nechaev, M S
AU - Asachenko, A F
AU - Morozov, O S
AU - Dzhevakov, P B
AU - Osipov, S N
AU - Vorobyeva, D V
AU - Topchiy, M A
AU - Zotova, M. A.
AU - Ponomarenko, S A
AU - Borshchev, O V
AU - Luponosov, Yu N
AU - Rempel', A A
AU - Valeeva, A A
AU - Stakheev, A.Yu
AU - Turova, O V
AU - Mashkovsky, I S
AU - Sysolyatin, S. V.
AU - Malykhin, V V
AU - Bukhtiyarova, G. A.
AU - Terentev, A O
AU - Krylov, I B
PY - 2014
DA - 2014/10/31
PB - Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii
SP - 885-985
IS - 10
VL - 83
SN - 0036-021X
SN - 1468-4837
ER -
BibTex |
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BibTex (up to 50 authors) Copy
@article{2014_Ananikov,
author = {V P Ananikov and L L Khemchyan and Yu V Ivanova and V. I. Bukhtiyarov and A M Sorokin and I P Prosvirin and S. Z. Vatsadze and A V Medvedko and V N Nuriev and A. D. Dilman and V. V. Levin and I. V. Koptyug and K V Kovtunov and V V Zhivonitko and V.A Likholobov and A. V. Romanenko and P.A Simonov and V G Nenajdenko and O I Shmatova and V M Muzalevskiy and M S Nechaev and A F Asachenko and O S Morozov and P B Dzhevakov and S N Osipov and D V Vorobyeva and M A Topchiy and M. A. Zotova and S A Ponomarenko and O V Borshchev and Yu N Luponosov and A A Rempel' and A A Valeeva and A.Yu Stakheev and O V Turova and I S Mashkovsky and S. V. Sysolyatin and V V Malykhin and G. A. Bukhtiyarova and A O Terentev and I B Krylov},
title = {Development of new methods in modern selective organic synthesis: Preparation of functionalized molecules with atomic precision},
journal = {Russian Chemical Reviews},
year = {2014},
volume = {83},
publisher = {Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii},
month = {oct},
url = {https://doi.org/10.1070/RC2014v83n10ABEH004471},
number = {10},
pages = {885--985},
doi = {10.1070/RC2014v83n10ABEH004471}
}
MLA
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MLA Copy
Ananikov, V. P., et al. “Development of new methods in modern selective organic synthesis: Preparation of functionalized molecules with atomic precision.” Russian Chemical Reviews, vol. 83, no. 10, Oct. 2014, pp. 885-985. https://doi.org/10.1070/RC2014v83n10ABEH004471.