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首页> 外文期刊>ACS Omega >A Cyclic Periodic Wave Function Approach for the Study of Infinitely Periodic Solid-State Systems. I. Application to the C–H···π(C≡C) Hydrogen Bonding Systems
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A Cyclic Periodic Wave Function Approach for the Study of Infinitely Periodic Solid-State Systems. I. Application to the C–H···π(C≡C) Hydrogen Bonding Systems

机译:无限周期固态系统研究的循环周期波函数方法。 I.应用于C-H···π(C 1C)氢键系统

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The cyclic periodic wave function (CPWF) approach is applied at the AM1 and PM3 semiempirical levels of approximation to infinitely periodic solid-state systems stabilized by weak CH–pi (C–H···π) interactions between repeat units. The reliability of the AM1 and PM3 methods for modeling C–H···π bonding is first demonstrated using two representative dimer systems: the T-shaped ethyne dimer and the T-shaped propyne dimer. The CPWF method is then applied to two different crystal systems that are stabilized by C–H···π interactions: (1) pent-4-ynoic acid solid and (2) a series of three infinite crystal systems—tetrakis(4-ethynylphenyl)methane solid, tetraethynylmethane solid, and tetrabutadiynylmethane solid. A comparison of our results with available data demonstrates that the use of the CPWF approach at the AM1 and PM3 levels of approximation provides a convenient and reliable method for the study of infinitely periodic systems containing very weak C–H···π bonding.
机译:循环周期波函数(CPWF)方法在AM1和PM3半透水水平上应用于通过弱CH-PI(C-H···π)相互作用稳定的无限周期固态系统。首先使用两个代表性二聚体系统来证明AM1和PM3用于建模C-H·π键合的方法的可靠性:T形乙炔二聚体和T形丙酰基二聚体。然后将CPWF方法施加到由C-H···π相互作用稳定的两个不同的晶体系统:(1)PET-4-奈瑟酸固体和(2)一系列三种无限晶体系统 - Tetrakis(4-乙炔基苯基)甲烷固体,四丙烯胺固体和四丁二炔基甲烷固体。我们使用可用数据的结果的比较表明,在AM1和PM3近似下使用CPWF方法提供了一种方便且可靠的方法,用于研究含有非常弱的C-H···键合的无限周期系统。

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