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非寻常的、溶剂黏度控制的互变异构和光物理性质:中位烷基取代卟吩。

Unusual, solvent viscosity-controlled tautomerism and photophysics: meso-alkylated porphycenes.

机构信息

Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.

出版信息

J Am Chem Soc. 2010 Sep 29;132(38):13472-85. doi: 10.1021/ja105353m.

Abstract

Stationary and time-resolved studies of 9,10,19,20-tetramethylporphycene and 9,10,19,20-tetra-n-propylporphycene in condensed phases reveal the coexistence of trans and cis tautomeric forms. Two cis configurations, cis-1 and cis-2, play a crucial role in understanding the excited-state deactivation and tautomer conversion dynamics. The trans-trans tautomerization, involving intramolecular transfer of two hydrogen atoms, is extremely rapid (k ≥ 10(13) s(-1)), both in the ground and lowest electronically excited states. The cis-1-trans conversion rate, even though the process is thermodynamically more favorable, is much slower and solvent-dependent. This is explained by the coupling of alkyl group rotation with the hydrogen motion. Excited-state deactivation is controlled by solvent viscosity: the S(1) depopulation rate decreases by more than 2 orders of magnitude when the chromophore is transferred from a low-viscosity solution to a polymer film. Such behavior confirms a model for excited state deactivation in porphycene, which postulates that a conical intersection exists along the single hydrogen transfer path leading from the trans to a high energy cis-2 tautomeric form. For this process, the tautomerization coordinate includes not only hydrogen translocation but also large-amplitude twisting of the two protonated pyrrole moieties attached to the opposite sides of the ethylene bridge.

摘要

在凝聚相中对 9,10,19,20-四甲基卟吩和 9,10,19,20-四正丙基卟吩的静态和时间分辨研究揭示了反式和顺式互变异构形式的共存。两种顺式构型,顺式-1 和顺式-2,在理解激发态失活和顺式互变异构转化动力学方面起着至关重要的作用。涉及两个氢原子的分子内转移的反式-反式互变异构是非常迅速的(k≥10(13) s(-1)),无论是在基态还是最低电子激发态。尽管顺式-1-反式转化过程在热力学上更为有利,但由于与烷基旋转的耦合,其速率要慢得多且取决于溶剂。这种情况可以通过将发色团从低粘度溶液转移到聚合物膜来解释,在这种情况下,激发态失活是由溶剂粘度控制的:当 S(1)去激发速率下降超过 2 个数量级。这种行为证实了卟吩中激发态失活的模型,该模型假定在从反式到高能顺式-2 互变异构形式的单氢转移路径上存在一个锥形交叉点。对于这个过程,互变异构坐标不仅包括氢迁移,还包括连接乙烯桥相对两侧的两个质子化吡咯部分的大幅度扭曲。

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