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Journal article

Synthetic control of retinal photochemistry and photophysics in solution.

Abstract:
Understanding how molecular structure and environment control energy flow in molecules is a requirement for the efficient design of tailor-made photochemistry. Here, we investigate the tunability of the photochemical and photophysical properties of the retinal-protonated Schiff base chromophore in solution. Replacing the n-butylamine Schiff base normally chosen to mimic the saturated linkage found in nature by aromatic amines results in the reproduction of the opsin shift and complete suppression of all isomerization channels. Modification of retinal by directed addition or removal of backbone substituents tunes the overall photoisomerization yield from 0 to 0.55 and the excited state lifetime from 0.4 to 7 ps and activates previously inaccessible reaction channels to form 7-cis and 13-cis products. We observed a clear correlation between the presence of polarizable backbone substituents and photochemical reactivity. Structural changes that increase reaction speed were found to decrease quantum yields, and vice versa, so that excited state lifetime and efficiency are inversely correlated in contrast to the trends observed when comparing retinal photochemistry in protein and solution environments. Our results suggest a simple model where backbone modifications and Schiff base substituents control barrier heights on the excited-state potential energy surface and therefore determine speed, product distribution, and overall yield of the photochemical process.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1021/ja4121814

Authors


More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Chemistry
Sub department:
Organic Chemistry
Role:
Author


More from this funder
Funding agency for:
Kukura, P
Fletcher, S
Grant:
EP/H003541/1
EP/K006630/1
EP/K006630/1
EP/H003711/1


Publisher:
American Chemical Society
Journal:
Journal of the American Chemical Society More from this journal
Volume:
136
Issue:
6
Pages:
2650-2658
Publication date:
2014-01-17
DOI:
EISSN:
1520-5126
ISSN:
0002-7863


Language:
English
Keywords:
Pubs id:
pubs:447890
UUID:
uuid:a628b59c-a52c-455e-9b73-56b7d108a98b
Local pid:
pubs:447890
Source identifiers:
447890
Deposit date:
2014-02-13

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