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对对羟基苯甲酰基笼形光触发化合物的理论研究:水如何引发光脱保护及随后的重排反应。

A theoretical investigation of P-hydroxyphenacyl caged phototrigger compounds: how water induces the photodeprotection and subsequent rearrangement reactions.

作者信息

Chen Xuebo, Ma Chensheng, Kwok Wai Ming, Guan Xiangguo, Du Yong, Phillips David Lee

机构信息

Department of Chemistry, The University of Hong Kong, Hong Kong SAR, PR China.

出版信息

J Phys Chem B. 2007 Oct 11;111(40):11832-42. doi: 10.1021/jp073529s. Epub 2007 Sep 15.

DOI:10.1021/jp073529s
PMID:17867669
Abstract

Complete active-space self-consistent field (CASSCF) calculations with a (14,11) active space and density functional theory calculations followed by Car-Parrinello molecular dynamic simulations are reported for the p-hydroxyphenacyl acetate, diethyl phosphate, and diphenyl phosphate phototrigger compounds. These calculations considered the explicit hydrogen bonding of water molecules to the phototrigger compound and help reveal the role of water in promoting the photodeprotection and subsequent rearrangement reactions for the p-hydroxyphenacyl caged phototrigger compounds experimentally observed in the presence of appreciable amounts of water but not observed in neat nonproton solvents like acetonitrile. The 267 nm excitation of the phototrigger compounds leads to an instantaneous population of the S3(1pipi*) state Franck-Condon region, which is followed by an internal conversion deactivation route to the S1(1npi*) state via a 1pipi*/1npi* vibronic coupling. The shorter lifetime of the S1(1npi*) state (approximately 1 ps) starting from the FC geometry is terminated by a fast intersystem crossing at a 3pipi*/3npi* intersection with a structure of mixed pipi*/npi* excitation in the triplet state. The deprotection reaction is triggered by a proton (or hydrogen atom) transfer assisted by water bridges and emanates from this pipi*/npi* triplet state intersection. With the departure of the leaving group, the reaction evolves into a water-mediated post-deprotection phase where the spin inversion of pQM (X, 3A) leads to a spiroketone in the ground state by a cyclization process that is followed by an attack of water to produce a 1,1'-di-hydroxyl-spiroketone. Finally, the H atom of the hydroxyl in 1,1'-di-hydroxyl-spiroketon transfers back to the p-O atom aided by water molecules to generate the p-hydroxyphenyl-acetic acid final rearrangement product.

摘要

本文报道了对对羟基苯乙酰乙酸酯、磷酸二乙酯和磷酸二苯酯光触发化合物进行的完全活性空间自洽场(CASSCF)计算(采用(14,11)活性空间)以及随后的密度泛函理论计算和卡-帕里尼罗分子动力学模拟。这些计算考虑了水分子与光触发化合物的明确氢键作用,有助于揭示水在促进对羟基苯乙酰笼状光触发化合物的光脱保护及后续重排反应中所起的作用。在大量水存在的情况下实验观察到了这些反应,但在纯非质子溶剂如乙腈中未观察到。光触发化合物在267 nm激发下会瞬间填充到S3(1ππ*)态的弗兰克-康登区域,随后通过1ππ*/1nπ振动耦合经由内部转换失活途径到达S1(1nπ)态。从弗兰克-康登几何结构开始,S1(1nπ*)态较短的寿命(约1 ps)通过在三重态中具有混合ππ*/nπ激发结构的3ππ/3nπ交叉点处的快速系间窜越而终止。脱保护反应由水桥辅助的质子(或氢原子)转移触发,并源于此ππ/nπ*三重态交叉点。随着离去基团的离去,反应演变为水介导的脱保护后阶段,在此阶段对醌甲基化物(X, 3A)的自旋反转通过环化过程导致基态的螺环酮,随后水进攻生成1,1'-二羟基螺环酮。最后,1,1'-二羟基螺环酮中羟基的氢原子在水分子的辅助下转移回对氧原子,生成对羟基苯乙酸最终重排产物。

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