首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Distinguishing and Quantifying the Torquoselectivity in Competitive Ring-Opening Reactions Using the Stress Tensor and QTAIM
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Distinguishing and Quantifying the Torquoselectivity in Competitive Ring-Opening Reactions Using the Stress Tensor and QTAIM

机译:使用应力张量和QTAIM区分和定量竞争开环反应中的扭转选择性

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摘要

Currently the theories to explain and predict the classification of the electronic reorganization due to the torquoselectivity of a ring-opening reaction cannot accommodate the directional character of the reaction pathway; the torquoselectivity is a type of stereoselectivity and therefore is dependent on the pathway. Therefore, in this investigation we introduced new measures from quantum theory of atoms in molecules and the stress tensor to clearly distinguish and quantify the transition states of the inward (TSIC) and outward (TSOC) conrotations of competitive ring-opening reactions of 3-(trifluoromethyl) cyclobut-1-ene and 1-cyano-1-methylcyclobutene. We find the metallicity n(rb) of the ring-opening bond does not occur exactly at the transition state in agreement with transition state theory. The vector-based stress tensor response beta(sigma) was used to distinguish the effect of the CN, CH3, and CF3 groups on the TSIC and TSOC paths that was consistent with the ellipticity epsilon, the total local energy density zeta(r(b)) and the stress tensor stiffness S-sigma. We determine the directional properties of the TSIC and TSOC ring-opening reactions by constructing a stress tensor U-sigma(TS) space with trajectories T-sigma(TS) (s) with length l in real space, longer l correlated with the lowest density functional theory-evaluated total energy barrier and hence will be more thermodynamically favored. (C) 2016 Wiley Periodicals, Inc.
机译:目前,用于解释和预测由于开环反应的选择性对电子重组的分类的理论不能适应反应路径的方向性。扭转选择性是立体选择性的一种,因此取决于途径。因此,在这项研究中,我们从分子中的原子量子理论和应力张量引入了新措施,以清楚地区分和量化3-(竞争性开环反应的向内(TSIC)和向外(TSOC)旋转的过渡态三氟甲基)环丁-1-烯和1-氰基-1-甲基环丁烯。我们发现,与过渡态理论一致,开环键的金属性n(rb)并非恰好出现在过渡态。基于矢量的应力张量响应β(sigma)用于区分CN,CH3和CF3基团对TSIC和TSOC路径的影响,该路径与椭圆率epsilon,总局部能量密度zeta(r(b ))和应力张量刚度S-sigma。我们通过构造应力张量U-sigma(TS)空间来确定TSIC和TSOC开环反应的方向性质,该应力张量U-sigma(TS)的轨迹在真实空间中的长度为l,较长的l与最低的相关密度泛函理论评估的总能垒,因此将在热力学上受到更多青睐。 (C)2016威利期刊公司

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