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Photochemical α-Cleavage Reaction of 3’5’-Dimethoxybenzoin: A Combined Time-Resolved Spectroscopy and Computational Chemistry Study

机译:35-二甲氧基异素的光化学α-切割反应:组合时间分辨光谱和计算化学研究

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摘要

Benzoin is one of the most commonly used photoinitiators to induce free radical polymerization. Here, improved benzoin properties could be accomplished by the introduction of two methoxy substituents, leading to the formation of 3’,5’-dimethoxybenzoin (DMB) which has a higher photo-cleavage quantum yield (0.54) than benzoin (0.35). To elucidate the underlying reaction mechanisms of DMB and obtain direct information of the transient species involved, femtosecond transient absorption (fs-TA) and nanosecond transient absorption (ns-TA) spectroscopic experiments in conjunction with density functional theory/time-dependent density functional theory (DFT/TD-DFT) calculations were performed. It was found that the photo-induced α-cleavage (Norrish Type I reaction) of DMB occurred from the nπ* triplet state after a rapid intersystem crossing (ISC) process (7.6 ps), leading to the generation of phenyl radicals on the picosecond time scale. Compared with Benzoin, DMB possesses two methoxy groups which are able to stabilize the alcohol radical and thus result in a stronger driving force for cleavage and a higher quantum yield of photodissociation. Two stable conformations ( -DMB and -DMB) at ground state were found via DFT calculations. The influence of the intramolecular hydrogen bond on the α-cleavage of DMB was elaborated.
机译:苯并素是诱导自由基聚合的最常用的光引发剂之一。这里,改善的苯胞素性能可以通过引入两种甲氧基取代基来实现,导致形成3',5'-二甲氧基异素素(DMB),其具有较高的光切割量子产率(0.54)而不是苯并素(0.35)。为了阐明DMB的潜在反应机制,并获得涉及的瞬态物种的直接信息,Femtosecond瞬态吸收(FS-TA)和纳秒瞬态吸收(NS-TA)光谱实验结合密度函数理论/时间依赖性密度泛函理论(DFT / TD-DFT)进行计算。结果发现,在快速交叉(ISC)工艺(7.6 PS)之后,DMB的光诱导的α-切割(Norrish I型反应)发生在NIπ*三重态状态(7.6 PS),导致PICOSECOND上的苯基产生时间尺度。与苯并素相比,DMB具有两种能够稳定醇自由基的甲氧基团,因此导致裂解的较强的驱动力和更高量子的光化产率。通过DFT计算发现地面状态下的两个稳定构象(-dmb和-dmb)。阐述了分子内氢键对DMBα裂解的影响。

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