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苯并稠合布罗克默卡宁类似物的光物理特性:溶剂极性和 pH 值的影响。

Photophysical characterization of a benzo-fused analogue of Brooker's merocyanine: solvent polarity and pH effects.

机构信息

Department of Chemistry, University of Miami, Coral Gables, Florida 33146, United States.

出版信息

J Phys Chem A. 2012 Dec 27;116(51):12470-5. doi: 10.1021/jp3106869. Epub 2012 Dec 14.

Abstract

The photophysical properties of 4-[2-(6-hydroxy-2-naphthalenyl)-ethenyl]-1-methyl-pyridinium (HNEP(+)) and its deprotonated form (NEP), a benzofused derivative of Brooker's merocyanine (BM), were investigated through a combined spectroscopic and computational approach. Despite their structural similarities and similar pK(a) values, HNEP(+)/NEP and BMH(+)/BM differ in the extent of charge delocalization in the ground and excited states. NEP exhibits the spectral characteristics of a charge transfer species in solvents in which BM exists in a charge-delocalized quinoid; however, quantum chemical calculations show that the CT absorption of NEP is not necessarily a consequence of the zwitterionic character. HNEP(+) displays larger Stokes shifts than BMH(+), and NEP demonstrates enhanced solvatochromism relative to BM as a consequence of benzofusion.

摘要

通过光谱和计算相结合的方法研究了 4-[2-(6-羟基-2-萘基)-乙烯基]-1-甲基吡啶鎓(HNEP(+))及其去质子形式(NEP)的光物理性质,这是 Brooker 的缩合型副品红(BM)的苯并稠合衍生物。尽管它们结构相似,pK(a)值也相似,但 HNEP(+)/NEP 和 BMH(+)/BM 在基态和激发态的电荷离域程度上有所不同。NEP 在溶剂中表现出电荷转移物种的光谱特征,而在这些溶剂中 BM 存在电荷离域的醌型;然而,量子化学计算表明,NEP 的 CT 吸收不一定是两性离子特征的结果。与 BMH(+)相比,HNEP(+)的斯托克斯位移更大,并且由于苯并稠合,NEP 相对于 BM 表现出增强的溶剂化变色。

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