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  4. Proton-transfer tautomerism of β-carbolines mediated by hydrogen-bonded complexes
 
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Proton-transfer tautomerism of β-carbolines mediated by hydrogen-bonded complexes

Journal
Journal of Physical Chemistry B
Journal Volume
105
Journal Issue
43
Pages
10674-10683
Date Issued
2001
Author(s)
PI-TAI CHOU  
Liu, Y.-I.
Wu, G.-R.
Shiao, M.-Y.
Yu, W.-S.
Cheng, C.-C.
Chang, C.-P.
DOI
10.1021/jp011031z
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-0035525941&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/293121
Abstract
The carboxylic acid catalyzed excited-state amino-imino tautomerism for β-carboline (β-CB) and its analogues has been investigated. Thermodynamics and microsolvation (i.e., stoichiometry of the complex formation) of various β-CB/acetic acid complexes in nonpolar solvents have been studied by means of absorption and emission titration experiments. Supplementary support of the stoichiometric ratio and structure for the hydrogen-bonding formation was provided by molecular design and syntheses of various β-CB analogues incorporating either only one hydrogen bonding site or dual hydrogen bonding sites where interplay between two sites are sterically prohibited. The results in combination with time-resolved measurements and theoretical approaches suggest the 1:2 β-CB/acetic acid complex with a structure of triple hydrogen bonding formation to be responsible for the excited-state proton-transfer tautomerism in cyclohexane. The proton transfer time is beyond the response limit of the detecting system of 15 ps, indicating that only a negligibly small geometry adjustment is required for the guest molecule (i.e., acetic acid) to a correct geometry, i.e., a hydrogen-bond relay configuration, for the triple proton transfer to proceed. In comparison, for the 1:1 β-CB/acetic acid non-hydrogen-bond relayed complexes, amino−imino tautomerism is prohibited during the excited-state lifetime, giving rise to a normal Stokes shifted emission. The results provide detailed ground-state thermodynamics of β-CB HB complexes as well as the dynamics of proton-transfer tautomerism mediated by the hydrogen-bonding structures.
SDGs

[SDGs]SDG6

Type
journal article

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