том 59 издание 5 страницы 941-953

Spectroscopic properties, structure, and photoinduced motion of 4-(2-naphthyl)pyridine in cyclodextrin cavities

Тип публикацииJournal Article
Дата публикации2010-05-01
scimago Q3
БС2
SJR0.305
CiteScore2.8
Impact factor
ISSN10665285, 15739171
General Chemistry
Краткое описание
Spontaneous and photoinduced protonation of 4-(2-naphthyl)pyridine (1) in solutions and in complexes with β-cyclodextrin (β-CD) and 2-hydroxypropyl-β-cyclodextrin (HP-β-CD) was studied using the absorption and fluorescence spectroscopies. The structures and stabilities of complexes of compound 1 and its quaternized derivative, 1-methyl-4-(2-naphthyl)pyridinium perchlorate (3), with β-CD and HP-β-CD were examined by 1H NMR titration (logK = 1.5–2.3). The molecule of naphthylpyridine 1 is always in the cyclodextrin cavity, regardless of the pH value of the solution. 2-Hydroxypropyl-β-cyclodextrin binds better the neutral form of compound 1 than does β-CD, while naphthylpyridinium salts exhibit nearly equal affinities to both cavitands. According to spectroscopic data, pKa (1) is 5.12 in water, which favors protonation of the N atom both in the ground and excited states; as a result, the fluorescence spectrum exhibits only the band of the protonated form with a lifetime of 15 ns. The addition of HP-β-CD to a solution of naphthylpyridine 1 results in the formation of inclusion complex 1@HP-β-CD, lowers pKa to 4.62, and gives rise to a fluorescence band of the nonprotonated form of compound 1 with a lifetime of 1.25 ns. Therefore, the presence of compound 1 in the HP-β-CD cavity precludes its protonation in the excited state. The initial portions of the fluorescence curves for compound 1 in solution and in its complex with HP-β-CD obtained upon pulsed excitation were compared to propose the initiation mechanism of short-lived fluorescence of the nonprotonated form of naphthylpyridine 1. Quantum chemical modeling of the protonation and complexation of compound 1 in the presence of water was performed. Based on the results obtained, a reversible photoinduced mechanical motion of naphthylpyridine 1 in the HP-β-CD cavity was suggested.
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Russian Chemical Bulletin
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New Journal of Chemistry
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Nanotechnologies in Russia
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Springer Nature
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Nazarov V. B. et al. Spectroscopic properties, structure, and photoinduced motion of 4-(2-naphthyl)pyridine in cyclodextrin cavities // Russian Chemical Bulletin. 2010. Vol. 59. No. 5. pp. 941-953.
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Nazarov V. B., Avakyan V. G., Gromov S. P., Vedernikov A., Fomina M. V., Vershinnikova T. G., Gak V. Yu., Lobova N., Rudyak V. Yu., Alfimov M. Spectroscopic properties, structure, and photoinduced motion of 4-(2-naphthyl)pyridine in cyclodextrin cavities // Russian Chemical Bulletin. 2010. Vol. 59. No. 5. pp. 941-953.
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TY - JOUR
DO - 10.1007/s11172-010-0188-y
UR - http://link.springer.com/10.1007/s11172-010-0188-y
TI - Spectroscopic properties, structure, and photoinduced motion of 4-(2-naphthyl)pyridine in cyclodextrin cavities
T2 - Russian Chemical Bulletin
AU - Nazarov, V B
AU - Avakyan, V G
AU - Gromov, S P
AU - Vedernikov, A.I.
AU - Fomina, M V
AU - Vershinnikova, T G
AU - Gak, V Yu
AU - Lobova, N.A.
AU - Rudyak, V Yu
AU - Alfimov, M.V.
PY - 2010
DA - 2010/05/01
PB - Springer Nature
SP - 941-953
IS - 5
VL - 59
SN - 1066-5285
SN - 1573-9171
ER -
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@article{2010_Nazarov,
author = {V B Nazarov and V G Avakyan and S P Gromov and A.I. Vedernikov and M V Fomina and T G Vershinnikova and V Yu Gak and N.A. Lobova and V Yu Rudyak and M.V. Alfimov},
title = {Spectroscopic properties, structure, and photoinduced motion of 4-(2-naphthyl)pyridine in cyclodextrin cavities},
journal = {Russian Chemical Bulletin},
year = {2010},
volume = {59},
publisher = {Springer Nature},
month = {may},
url = {http://link.springer.com/10.1007/s11172-010-0188-y},
number = {5},
pages = {941--953},
doi = {10.1007/s11172-010-0188-y}
}
MLA
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Nazarov, V. B., et al. “Spectroscopic properties, structure, and photoinduced motion of 4-(2-naphthyl)pyridine in cyclodextrin cavities.” Russian Chemical Bulletin, vol. 59, no. 5, May. 2010, pp. 941-953. http://link.springer.com/10.1007/s11172-010-0188-y.