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An electron localization function and catastrophe theory analysis on the molecular mechanism of gas-phase identity SN2 reactions

机译:气相身份SN 2反应的分子机理的电子定位功能和突变理论分析

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A set of four reactions, XCH3+X− (X=F, Cl, Br) and ClSiH3+Cl−, is investigated by means of the joint use of the electron localization function (ELF) and catastrophe theory (CT) analysis in order to obtain new insights into the bond breaking/forming processes for identity SN2 gas-phase reactions. Using DFT calculations at the OLYP/6-311++G(d,p) level, the effect of nucleophile (F, Cl, and Br anions) and the role of reacting centers (C or Si) on the reaction mechanisms are investigated. The charge-shift character of carbon–halogen bonds is studied by determination of the weights of the Lewis resonance structures. In all SN2 reactions at the carbon atom, there is a progressive reduction on the covalent character of the C–X bond from the reactant complex (0.41, 0.57, 0.58 for F, Cl, and Br, respectively) until the bond-breaking process, occurring before the transition structure is reached. On the other hand, the Si–Cl bond maintains its degree of covalent character (0.51) from the isolated fragments to the formation of a stable transition complex, presenting two silicon–chlorine charge-shifted bonds. The analysis of the ELF topology along the reaction path reveals that all reactions proceed via the same turning points of fold-type but the order is inverted for reactions taking place at C or Si atoms.
机译:通过联合使用XCH3 + X-(X = F,Cl,Br)和ClSiH3 + Cl-四个反应进行研究。电子定位函数(ELF)和突变理论(CT)分析,以期获得对身份SN 2气相反应的键断裂/形成过程的新见解。使用OLYP / 6-311 ++ G(d,p)水平的DFT计算,研究了亲核试剂(F,Cl和Br阴离子)的作用以及反应中心(C或Si)在反应机理上的作用。通过确定路易斯共振结构的权重,研究了碳-卤键的电荷转移特性。在碳原子上的所有SN 2反应中,从反应物络合物开始,C–X键的共价特性逐渐降低(对于F,Cl和Br分别为0.41、0.57、0.58),直到在达到过渡结构之前发生的键断裂过程。另一方面,从分离的片段到形成稳定的过渡络合物,Si-Cl键保持其共价特征度(0.51),呈现两个硅-氯电荷转移键。沿反应路径的ELF拓扑分析表明,所有反应均通过相同的折叠型拐点进行,但对于在C或Si原子处发生的反应,其顺序是相反的。

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