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首页> 外文期刊>International Journal of Quantum Chemistry >Nuclear quantum and H/D isotope effects on three-centered bonding diborane: Path integral molecular dynamics simulations
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Nuclear quantum and H/D isotope effects on three-centered bonding diborane: Path integral molecular dynamics simulations

机译:核量子和H / D同位素对三中心粘接二硼烷的影响:路径整体分子动力学模拟

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摘要

Nuclear quantum and H/D isotope effects of bridging and terminal hydrogen atoms of diborane (B2H6) molecules were systematically studied by classical ab initio molecular dynamics (CLMD) and ab initio path integral molecular dynamics (PIMD) simulations with BHandHLYP/6-31++G** level of theory at room temperature (298.15 K). Calculated results clearly show that H/D isotope effect appears in the distribution of hydrogen (deuterium) of B2H6 (B2D6). Geometry of B2H6 also plays a significant role in the nuclear quantum effect proved by PIMD simulations, but slightly deviated from its equilibrium structure when simulated via CLMD simulation. The bond lengths between boron atoms R (B1 horizontal ellipsis B2) and the bridging hydrogen atoms R-HH (H(B)1 horizontal ellipsis H(B)2) of the B2H6 molecule obtained from PIMD simulations are slightly longer than those of the deuterated form of the diborane (B2D6) molecule. The principal component analysis (PCA) was also employed to distinguish the important modes of bridging hydrogen as related to the nuclear quantum and H/D isotope effects. The highest level of contribution obtained from PCA of PIMD simulations is bending, while various mixed vibrations with less contribution were also found. Therefore, the nuclear quantum and H/D isotope effects need to be taken into account for a better understanding of diborane geometry.
机译:通过Bumdhlyp / 6-31 +系统地研究了偶硼烷(B2H6)分子(B2H6)分子的桥接和末端氢原子的核量子和H / D同位素的影响,Bhandhlyp / 6-31 + + Ab Initio路径整体分子动力学(PIMD)模拟+ G **室温理论水平(298.15 k)。计算结果清楚地表明,H / d同位素效应出现在B2H6(B2D6)的氢气(氘)的分布中。 B2H6的几何形状也在PIMD模拟中证明的核量子效应中起着重要作用,但在通过CLMD仿真模拟时略微偏离其平衡结构。硼原子R(B1水平椭圆B2)和从PIMD模拟获得的B2H6分子的桥接氢原子(H(b)1水平椭圆形H(b)2)的键长度略长于二硼烷(B2D6)分子的氘代形式。还采用主成分分析(PCA)来区分桥接氢与核量子和H / D同位素效应的重要模式。从PIMD模拟PCA获得的最高拨款是弯曲的,而且还发现了具有较少贡献的各种混合振动。因此,需要考虑核量子和H / D同位素效应,以更好地了解二硼烷几何形状。

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