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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Photochemistry of the 1,6-Dideuterio-1,3,5-hexatrienes in Solution: Efficient Terminal Bond Photoisomerization in One-Bond-Twist and Bicycle Pedal Ways
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Photochemistry of the 1,6-Dideuterio-1,3,5-hexatrienes in Solution: Efficient Terminal Bond Photoisomerization in One-Bond-Twist and Bicycle Pedal Ways

机译:溶液中1,6-Dideuterio-1,3,5-六配六加原料的光化学:一键式扭曲和自行车踏板方式的高效终端键光学化

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摘要

The report that the central bond photoisomerization of the 1,3,5-hexatrienes (Hts) is highly inefficient has encouraged theoreticians to seek conical intersections (CIs) at geometries that can explain rapid nonradiative return to the initially excited isomer. Because they are photochemically silent, torsional relaxations about the terminal double bonds of the Hts have not been evaluated as significant radiationless decay pathways. Study of the photoisomerization of trans,trans,trans- and trans,cis,trans-1,6-dideuterio-1,3,5-hexatrienes (ttt- and tct-Ht(d2)) addresses this issue. Degassed cyclohexane-d(12) (C6D12) and CD3CN solutions were irradiated at 254 nm in quartz NMR tubes, and the progress of the reactions was followed by H-1 NMR. Photoisomerization rates based on the integration of terminal hydrogen NMR peaks are in reasonable agreement with rates obtained by fitting pure isomer NMR spectra to the phase shift and baseline corrected experimental NMR spectra. The results show that terminal bond isomerization is highly efficient, especially when one considers that central bond isomerization is much more efficient than previously reported and is mainly observed together with terminal bond isomerization. A mechanism involving terminal one-bond-twist (OBT) in competition with a bicycle pedal (BP) process accounts for all terminal and most central bond photoisomerization. OBT central bond isomerization is a minor reaction that is observed primarily in the tct to ttt direction. Most surprising is the prominent role of the BP process in central bond photoisomerization. Proposed initially to account for photoisomerization in free volume constraining media, it is observed here in the absence of medium constraints.
机译:该报告称,1,3,5-六配(HTS)的中央债券光学激发效率高度低效,鼓励理论者在几何形状寻求锥形交叉口(CIS),可以解释初始激发的异构体的快速非浪潮。因为它们是光化学上的沉默,所以关于HTS的末端双键的扭转弛豫尚未被评估为显着的辐射衰减途径。反式,反式,反式和反式,CIS,Trans-1,6-DideuteriO-1,3,5-六烷烃(TTT-和TCT-HT(D2))的研究解决了这个问题。在石英NMR管中以254nm照射脱气的环己烷-d(12)(C6D12)和CD3CN溶液,并在H-1 NMR之后进行反应的进展。基于终端氢NMR峰的积分的光硅酸钙率与通过将纯异构体NMR光谱拟合到相移和基线校正的实验性NMR光谱而获得的速率合理一致。结果表明,终端键异构化是高效的,特别是当一个人认为中央键异构化比以前报道的更有效并且主要观察到末端键合异构化。涉及终端单键 - 扭曲(Obs)的机制与自行车踏板(BP)过程占所有终端和大多数中央债券光偏移。收集中心键异构化是一种微小的反应,其主要观察到TTT方向。最令人惊讶的是BP过程在中央债券的突出作用。最初提出以考虑在自由体积限制介质中的光致作用,这里在没有中等限制的情况下观察到。

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