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对羟基苯甲酰基笼形磷酸盐光脱保护和重排反应的超快时间分辨瞬态吸收和共振拉曼光谱研究

Ultrafast time-resolved transient absorption and resonance raman spectroscopy study of the photodeprotection and rearrangement reactions of p-hydroxyphenacyl caged phosphates.

作者信息

Ma Chensheng, Kwok Wai Ming, Chan Wing Sum, Du Yong, Kan Jovi Tze Wai, Toy Patrick H, Phillips David Lee

机构信息

Contribution from the Department of Chemistry, The University of Hong Kong, SAR, P R China.

出版信息

J Am Chem Soc. 2006 Mar 1;128(8):2558-70. doi: 10.1021/ja0532032.

Abstract

The kinetics and mechanism of the photodeprotection and rearrangement reactions for the pHP phototrigger compounds p-hydroxyphenacyl diethyl phosphate (HPDP) and diphenyl phosphate (HPPP) were studied using transient absorption (TA) and picosecond time-resolved resonance Raman (ps-TR(3)) spectroscopy. TA spectroscopy was employed to detect the dynamics of the triplet precursor decay as well as to investigate the influence of the solvent and leaving group on the triplet quenching process. Ps-TR(3) spectroscopy was used to directly monitor the formation dynamics for the photosolvolytic rearrangement product and its solvent and leaving group dependence. The TA and TR(3) spectroscopy experiments were also used to characterize the structural and electronic properties of the triplet precursor to the HPDP and HPPP deprotection reactions. The solvent effect observed in conjunction with the leaving group dependence of the triplet decay dynamics are consistent with a concerted solvent assisted triplet cleavage through a heterolytic mechanism for the HPDP and HPPP photodeprotection process. Correlation of the dynamics between the deprotection and rearrangement processes reveals there is a consecutive mechanism and the involvement of an intermediate between the two reaction steps. The reaction rate of the deprotection and rearrangement steps and the influence of the solvent and leaving group were determined and evaluated based on kinetic modeling of the dynamical data obtained experimentally for HPDP and HPPP in H(2)O/MeCN mixed solvents with varying water concentration in the solvent system. A solvation complex with a contact ion pair character was proposed to be the intermediate involved in the deprotection and rearrangement pathway. The results here combined with our previous study on the photophysical events occurring on the early picosecond time scale (Ma; et al. J. Am. Chem. Soc. 2005, 127, 1463-1472) provide a real time overall mechanistic description for the photodeprotection and rearrangement reactions of pHP caged phosphate phototrigger compounds.

摘要

利用瞬态吸收(TA)和皮秒时间分辨共振拉曼(ps-TR(3))光谱研究了pHp光触发化合物对羟基苯甲酰基二乙基磷酸酯(HPDP)和二苯基磷酸酯(HPPP)的光脱保护和重排反应的动力学及机理。TA光谱用于检测三重态前体的衰减动力学,以及研究溶剂和离去基团对三重态猝灭过程的影响。Ps-TR(3)光谱用于直接监测光解重排产物的形成动力学及其对溶剂和离去基团的依赖性。TA和TR(3)光谱实验还用于表征HPDP和HPPP脱保护反应的三重态前体的结构和电子性质。结合三重态衰减动力学的离去基团依赖性观察到的溶剂效应,与通过异裂机理的协同溶剂辅助三重态裂解一致,用于HPDP和HPPP的光脱保护过程。脱保护和重排过程之间动力学的相关性表明存在连续机理,并且两个反应步骤之间涉及中间体。基于对HPDP和HPPP在具有不同水浓度的H(2)O/MeCN混合溶剂体系中实验获得的动力学数据进行动力学建模,确定并评估了脱保护和重排步骤的反应速率以及溶剂和离去基团的影响。提出具有接触离子对特征的溶剂化络合物是脱保护和重排途径中涉及的中间体。这里的结果与我们之前关于皮秒早期时间尺度上发生的光物理事件的研究(Ma等人,《美国化学会志》,2005年,127卷,1463 - 1472页)相结合,为pHp笼状磷酸光触发化合物的光脱保护和重排反应提供了实时的整体机理描述。

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