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Born-Oppenheimer molecular dynamics, hydrogen bond interactions and magnetic properties of liquid hydrogen cyanide

机译:出生 - 敌人的分子动力学,氢键相互作用和液体氰化氢的磁性

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Magnetic properties are a very sensitive probe of hydrogen bond interactions. In this work, the magnetic shielding constants of liquid hydrogen cyanide (HCN) were investigated through a combined approach, where quantum mechanical calculations are carried out by using configurations generated by Born-Oppenheimer molecular dynamics (BOMD). Following the trends observed in small HCN clusters, the results for liquid HCN show that the magnetic shielding constant sigma(N-15) is increased by 10.5 +/- 12 ppm relative to its gas phase value, which is in very good agreement with experiment (10 ppm). The shielding of the N atom in the liquid phase of HCN is in contrast to what is observed in liquid ammonia, where the N atom is deshielded relative to the gas phase. By adopting a natural chemical shielding (NCS) analysis, it is shown that the sigma(d)(N-15) diamagnetic shielding constant of HCN is not changed when we move from the gas to the liquid phase. Moreover, the results strongly indicate that the gas-to-liquid chemical shift of the N-15 atom is essentially determined by the difference between the nitrogen lone-pair (LP) orbital paramagnetic contribution to sigma(p)(N-15). The importance of coupling NCS to BOMD configurations for a better understanding of the relationship between hydrogen bonding and the somewhat anomalous shielding of the N-15 atom in liquid HCN is stressed. (C) 2018 Elsevier B.V. All rights reserved.
机译:磁性是氢键相互作用的非常敏感的探针。在这项工作中,通过组合方法研究液体氢化氰化氢(HCN)的磁屏蔽常数,其中通过使用由oppenheimer分子动力学(BOMD)产生的配置进行量子力学计算。在小型HCN集群中观察到的趋势之后,液体HCN的结果表明,相对于其气相值,磁屏蔽恒定Sigma(N-15)增加了10.5 +/- 12ppm,这与实验非常好(10 ppm)。与在液态氨中观察到的液相相反,N原子的屏蔽与液态氨中的液相相反,其中N原子相对于气相脱离。通过采用天然化学屏蔽(NCS)分析,示出了当我们从气体到液相移动时,HCN的Σ(D)(N-15)抗磁屏蔽常数不会改变。此外,结果强烈表明,N-15原子的气液化学偏移基本上决定通过氮气杆对(LP)轨道顺磁贡献与Sigma(P)(N-15)之间的差异决定。施加压力将NCS耦合到BOMD配置的重要性,以便更好地理解氢键与液体HCN中N-15原子的稍微异常屏蔽的关系。 (c)2018年elestvier b.v.保留所有权利。

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