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双生色光引发剂 3',5'-二甲氧基安息香二乙酯的时间分辨光谱研究:两个生色团之间的相互作用决定了反应途径。

A time-resolved spectroscopic study of the bichromophoric phototrigger 3',5'-dimethoxybenzoin diethyl phosphate: interaction between the two chromophores determines the reaction pathway.

机构信息

Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, P. R. China.

出版信息

Chemistry. 2010 May 3;16(17):5102-18. doi: 10.1002/chem.200902891.

Abstract

3',5'-Dimethoxybenzoin (DMB) is a bichromophoric system that has widespread application as a highly efficient photoremovable protecting group (PRPG) for the release of diverse functional groups. The photodeprotection of DMB phototriggers is remarkably clean, and is accompanied by the formation of a biologically benign cyclization product, 3',5'-dimethoxybenzofuran (DMBF). The underlying mechanism of the DMB deprotection and cyclization has, however, until now remained unclear. Femtosecond transient absorption (fs-TA) spectroscopy and nanosecond time-resolved resonance Raman (ns-TR(3)) spectroscopy were employed to detect the transient species directly, and examine the dynamic transformations involved in the primary photoreactions for DMB diethyl phosphate (DMBDP) in acetonitrile (CH(3)CN). To assess the electronic character and the role played by the individual sub-chromophore, that is, the benzoyl, and the di-meta-methoxybenzylic moieties, for the DMBDP deprotection, comparative fs-TA measurements were also carried out for the reference compounds diethyl phosphate acetophenone (DPAP), and 3',5'-dimethoxybenzylic diethyl phosphate (DMBnDP) in the same solvent. Comparison of the fs-TA spectra reveals that the photoexcited DMBDP exhibits distinctly different spectral character and dynamic evolution from those of the reference compounds. This fact, combined with the related steady-state spectral and density functional theoretical results, strongly suggests the presence in DMBDP of a significant interaction between the two sub-chromophores, and that this interaction plays a governing role in determining the nature of the photoexcitation and the reaction channel of the subsequent photophysical and photochemical transformations. The ns-TR(3) results and their correlation with the fs-TA spectra and dynamics provide evidence for a novel concerted deprotection-cyclization mechanism for DMBDP in CH(3)CN. By monitoring the direct generation of the transient DMBF product, the cyclization time constant was determined unequivocally to be approximately 1 ns. This indicates that there is little relevance for the long-lived intermediates (>10 ns) in giving the DMBF product, and excludes the stepwise mechanism proposed in the literature as the major pathway for the DMB cyclization reaction. This work provides important new insights into the origin of the 3',5'-dimethoxy substitution effect for the DMB photodeprotection. It also helps to clarify the many different views presented in previous mechanistic studies of the DMB PRPGs. In addition to this, our fs-TA results on the reference compound DMBnDP in CH(3)CN provide the first direct observation (to the best of our knowledge) showing the predominance of a prompt (approximately 2 ps) heterolytic bond cleavage after photoexcitation of meta-methoxybenzylic compounds. This provides insight into the long-term controversies about the photoinitiated dissociation mode of related substituted benzylic compounds.

摘要

3',5'-二甲氧基苯偶姻(DMB)是一种双生色团体系,作为一种高效的光解保护基团(PRPG),广泛应用于释放各种官能团。DMB 光引发剂的光解保护非常干净,并伴随着生物良性环化产物 3',5'-二甲氧基苯并呋喃(DMBF)的形成。然而,DMB 去保护和环化的潜在机制迄今仍不清楚。飞秒瞬态吸收(fs-TA)光谱和纳秒时间分辨共振拉曼(ns-TR(3))光谱被用来直接检测瞬态物种,并研究 DMB 二乙酯磷酸盐(DMBDP)在乙腈(CH(3)CN)中的初级光反应所涉及的动态转化。为了评估电子特性和各个亚生色团(即苯甲酰基和二甲氧基苄基部分)在 DMBDP 去保护中的作用,还对参考化合物二乙酯苯乙酮(DPAP)和 3',5'-二甲氧基苄基二乙酯磷酸盐(DMBnDP)在相同溶剂中的 fs-TA 测量进行了比较。比较 fs-TA 光谱表明,光激发的 DMBDP 表现出与参考化合物明显不同的光谱特征和动态演变。这一事实,再加上相关的稳态光谱和密度泛函理论结果,强烈表明 DMBDP 中两个亚生色团之间存在显著的相互作用,这种相互作用在决定光激发的性质和随后的光物理和光化学反应通道方面起着主导作用。ns-TR(3)结果及其与 fs-TA 光谱和动力学的相关性为 DMBDP 在 CH(3)CN 中的新型协同去保护-环化机制提供了证据。通过监测瞬态 DMBF 产物的直接生成,明确确定了环化时间常数约为 1 ns。这表明对于 DMBF 产物,长寿命中间体(>10 ns)的相关性很小,并排除了文献中提出的逐步机制作为 DMB 环化反应的主要途径。这项工作为 DMB 光解保护的 3',5'-二甲氧基取代效应的起源提供了重要的新见解。它还有助于澄清以前对 DMB PRPG 进行的机制研究中提出的许多不同观点。除此之外,我们在 CH(3)CN 中对参考化合物 DMBnDP 的 fs-TA 结果提供了第一次直接观察(据我们所知),表明在 meta-甲氧基苄基化合物光激发后,优先发生快速(约 2 ps)异裂键断裂。这为长期以来关于相关取代苄基化合物光引发解离模式的争议提供了一些见解。

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