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QM/MM nonadiabatic dynamics simulations on photoinduced Wolff rearrangements of 1,2,3-thiadiazole

机译:QM / MM非抗烫动力学模拟1,2,3-噻二唑的光脉冲Wolff重排

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摘要

The photoinduced rearrangement reaction mechanism of 1,2,3-thiadiazole remains experimentally elusive. Two possible mechanisms have been proposed to date. The first is a stepwise mechanism via a thiocarbene intermediate; the second is an excited-state concerted rearrangement mechanism. Herein we have adopted both the electronic structure calculations and nonadiabatic dynamics simulations to study the photoinduced rearrangement reactions of 1,2,3-thiadiazole in the S-2, S-1, and S-0 states in solution. On the basis of QM(CASPT2)/MM [quantum mechanics(complete active space self-consistent field second-order perturbation theory)/molecular mechanics] calculations, we have found that (1) the thiocarbene intermediate is not stable; thus, the stepwise mechanism should be unfavorable; (2) the excited-state decay from the S-2 via S-1 to S-0 state is ultrafast and completed within ca. 200 fs; therefore, both the S-2 and S-1 states should not have a long enough time for the excited-state rearrangements. Instead, we have computationally proposed a modified photoinduced rearrangement mechanism. Upon irradiation, the S-2 state is first populated (114.0 kcal/mol), followed by an ultrafast S-2 -> S-1 -> S-0 excited-state decay along the S-N bond fission, which eventually leads to a very "hot" intermediate with the S-N bond broken (18.3 kcal/mol). Then, thermal rearrangements to thioketene, thiirene, and ethynethiol occur in a concerted asynchronous way. This mechanistic scenario has been verified by full-dimensional trajectory-based nonadiabatic dynamics simulations at the QM(CASPT2)/MM level. Finally, our present computational work provides experimentally interesting mechanistic insights into the photoinduced rearrangement reactions of cyclic and acyclic diazo compounds. Published by AIP Publishing.
机译:的1,2,3-噻二唑遗体实验难以捉摸光致重排反应的机制。两种可能的机制已经被提出至今。第一个是通过一个中间thiocarbene阶段性机构;第二个是激发态一致重排机制。本文我们采用两个电子结构计算和非绝热动力学模拟来研究在S-2,S-1的1,2,3-噻二唑的光致重排反应,并在溶液S-0的状态。上QM(CASPT2)的基础和/ MM [量子力学(完全活性空间自洽场二阶微扰理论)/分子力学]计算,我们已经发现,(1)的中间thiocarbene也不稳定;因此,有级式机制应该是不利; (2)从S-2经由S-1的激发态衰减到S-0状态超快和约内完成200个FS;因此,无论是S-2和S-1个状态不应该有足够长的时间用于激发态重排。相反,我们计算提出了一种改进的光致重排机制。在照射时,在S-2状态被首先填充(114.0千卡/摩尔),接着超快S-2 - > S-1 - > S-0沿SN键裂变激发态衰变,这最终导致一个非常“热”中间与SN键的断裂(18.3千卡/摩尔)。然后,热重排以硫代双烯酮,thiirene和ethynethiol发生在一致的异步方式。这种机械情景已经在QM(CASPT2)/ MM水平得到了验证通过全维基于轨迹的非绝热动力学模拟。最后,我们目前的计算工作提供实验有趣的机械见解循环和非循环重氮化合物的光致重排反应。通过AIP发布发布。

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  • 来源
    《The Journal of Chemical Physics》 |2017年第22期|共11页
  • 作者单位

    Beijing Normal Univ Key Lab Theoret &

    Computat Photochem Minist Educ Coll Chem Beijing 100875 Peoples R China;

    Beijing Normal Univ Key Lab Theoret &

    Computat Photochem Minist Educ Coll Chem Beijing 100875 Peoples R China;

    Beijing Normal Univ Key Lab Theoret &

    Computat Photochem Minist Educ Coll Chem Beijing 100875 Peoples R China;

    Beijing Normal Univ Key Lab Theoret &

    Computat Photochem Minist Educ Coll Chem Beijing 100875 Peoples R China;

    Beijing Normal Univ Key Lab Theoret &

    Computat Photochem Minist Educ Coll Chem Beijing 100875 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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