Ultrafast Infrared and UV–Vis Studies of the Photochemistry of Methoxycarbonylphenyl Azides in Solution
Publication type: Journal Article
Publication date: 2012-05-23
scimago Q2
wos Q2
SJR: 0.634
CiteScore: 4.8
Impact factor: 2.8
ISSN: 10895639, 15205215
PubMed ID:
22568477
Physical and Theoretical Chemistry
Abstract
The photochemistry of 4-methoxycarbonylphenyl azide (2a), 2-methoxycarbonylphenyl azide (3a), and 2-methoxy-6-methoxycarbonylphenyl azide (4a) were studied by ultrafast time-resolved infrared (IR) and UV-vis spectroscopies in solution. Singlet nitrenes and ketenimines were observed and characterized for all three azides. Isoxazole species 3g and 4g are generated after photolysis of 3a and 4a, respectively, in acetonitrile. Triplet nitrene 4e formation correlated with the decay of singlet nitrene 4b. The presence of water does not change the chemistry or kinetics of singlet nitrenes 2b and 3b, but leads to protonation of 4b to produce nitrenium ion 4f. Singlet nitrenes 2b and 3b have lifetimes of 2 ns and 400 ps, respectively, in solution at ambient temperature. The singlet nitrene 4b in acetonitrile has a lifetime of about 800 ps, and reacts with water with a rate constant of 1.9 × 10(8) L·mol(-1)·s(-1) at room temperature. These results indicate that a methoxycarbonyl group at either the para or ortho positions has little influence on the ISC rate, but that the presence of a 2-methoxy group dramatically accelerates the ISC rate relative to the unsubstituted phenylnitrene. An ortho-methoxy group highly stabilizes the corresponding nitrenium ion and favors its formation in aqueous solvents. This substituent has little influence on the ring-expansion rate. These results are consistent with theoretical calculations for the various intermediates and their transition states. Cyclization from the nitrene to the azirine intermediate is favored to proceed toward the electron-deficient ester group; however, the higher energy barrier is the ring-opening process, that is, azirine to ketenimine formation, rendering the formation of the ester-ketenimine (4d') to be less favorable than the isomeric MeO-ketenimine (4d).
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Total citations:
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Citations from 2025:
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(3.7%)
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Xue J. et al. Ultrafast Infrared and UV–Vis Studies of the Photochemistry of Methoxycarbonylphenyl Azides in Solution // Journal of Physical Chemistry A. 2012. Vol. 116. No. 22. pp. 5325-5336.
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Xue J., Luk H. L., Eswaran S., Hadad C. M., Platz M. S. Ultrafast Infrared and UV–Vis Studies of the Photochemistry of Methoxycarbonylphenyl Azides in Solution // Journal of Physical Chemistry A. 2012. Vol. 116. No. 22. pp. 5325-5336.
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RIS
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TY - JOUR
DO - 10.1021/jp3025705
UR - https://doi.org/10.1021/jp3025705
TI - Ultrafast Infrared and UV–Vis Studies of the Photochemistry of Methoxycarbonylphenyl Azides in Solution
T2 - Journal of Physical Chemistry A
AU - Xue, Jiadan
AU - Luk, Hoi Ling
AU - Eswaran, S.V.
AU - Hadad, Christopher M
AU - Platz, Matthew S.
PY - 2012
DA - 2012/05/23
PB - American Chemical Society (ACS)
SP - 5325-5336
IS - 22
VL - 116
PMID - 22568477
SN - 1089-5639
SN - 1520-5215
ER -
Cite this
BibTex (up to 50 authors)
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@article{2012_Xue,
author = {Jiadan Xue and Hoi Ling Luk and S.V. Eswaran and Christopher M Hadad and Matthew S. Platz},
title = {Ultrafast Infrared and UV–Vis Studies of the Photochemistry of Methoxycarbonylphenyl Azides in Solution},
journal = {Journal of Physical Chemistry A},
year = {2012},
volume = {116},
publisher = {American Chemical Society (ACS)},
month = {may},
url = {https://doi.org/10.1021/jp3025705},
number = {22},
pages = {5325--5336},
doi = {10.1021/jp3025705}
}
Cite this
MLA
Copy
Xue, Jiadan, et al. “Ultrafast Infrared and UV–Vis Studies of the Photochemistry of Methoxycarbonylphenyl Azides in Solution.” Journal of Physical Chemistry A, vol. 116, no. 22, May. 2012, pp. 5325-5336. https://doi.org/10.1021/jp3025705.