首页> 外文期刊>The Journal of Chemical Physics >AN INVESTIGATION OF THE QUANTUM CHEMICAL DESCRIPTION OF THE ETHYLENIC DOUBLE BOND IN REACTIONS .1. THE ELECTROPHILIC ADDITION OF HYDROCHLORIC ACID TO ETHYLENE
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AN INVESTIGATION OF THE QUANTUM CHEMICAL DESCRIPTION OF THE ETHYLENIC DOUBLE BOND IN REACTIONS .1. THE ELECTROPHILIC ADDITION OF HYDROCHLORIC ACID TO ETHYLENE

机译:反应中乙基双键的量子化学描述的研究1。盐酸与乙烯的静电加成

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The bimolecular reaction mechanism for adding hydrochloric acid to ethylene is studied within a number of contemporary quantum chemical models. The transition state structure and energy is examined in detail, and high-level calculations support a picture of an intimate association of a chloride anion and a bridged ethyl cation, with some covalent bonding retained between chlorine and hydrogen. A tunneling correction of 1 kcal/mol in the reaction barrier is obtained by the Bell equation. The methods employed include configuration interaction (CI) and gradient-corrected density functional theory (DFTG), with a range of basis sets. High-end CI and DFT methods perform equally well with respect to enthalpies of reaction and activation, when used in connection with large bases. However, when bases of double-zeta plus polarization quality are used, an unfortunate accumulation of errors makes DFTG inferior. This is in contrast to the excellent values for a number of ground state properties of relevance to the reaction barrier which are obtained at this level of theory. A recently proposed extrapolation procedure for CI energies (PCI-80) is shown to fail for the electron affinity of chlorine, leading to an exaggerated estimate of the barrier for the title reaction. The single-particle description of the rr bond in ethylene converges very slowly with the number of basis functions, and this affects the reaction enthalpy as computed by DFT and CI methods to a similar degree. (C) 1996 American Institute of Physics. [References: 64]
机译:在许多当代量子化学模型中研究了将盐酸添加到乙烯中的双分子反应机理。详细研究了过渡态结构和能量,高水平的计算支持了氯离子和桥连的乙基阳离子的紧密缔合,在氯和氢之间保留了一些共价键。通过Bell方程获得反应势垒中1 kcal / mol的隧穿校正。所采用的方法包括配置相互作用(CI)和梯度校正的密度泛函理论(DFTG),以及一系列基础集。当与大碱结合使用时,高端CI和DFT方法在反应和活化焓方面的表现同样出色。但是,当使用双峰加极化质量的碱基时,不幸的错误累积使DFTG变差。这与在该理论水平下获得的与反应阻挡层相关的许多基态性质的优异值相反。结果表明,最近提出的CI能量外推程序(PCI-80)对氯的电子亲和力失败,导致对标题反应势垒的估计过大。乙烯中rr键的单颗粒描述会随着基函数的数量而非常缓慢地收敛,这对DFT和CI方法计算出的反应焓具有相似的影响。 (C)1996年美国物理研究所。 [参考:64]

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