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PERIODIC HARTREE-FOCK CALCULATIONS ON CRYSTALLINE HCN

机译:HCN晶体的周期HARTREE-FOCK计算

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Periodic Hartree-Fock calculations on the tetragonal, high temperature, form of solid HCN are HF/6-31G** methodology, the lattice energy per molecule is predicted to be 21.8 kJ mol(-1), in good agreement with an experimental value of 19 kJ mol(-1). Atoms-in-molecules decomposition of the resulting charge distribution, based on Bader's zero-flux partitioning scheme, yields an in-crystal dipole moment of 1.734 a.u., a 38% increase over the isolated molecule. It is shown that this dipole moment enhancement is due solely to increased interatomic charge transfer, since the atomic dipoles are actually reduced by the crystal field. The intermolecular interactions in the crystal are characterized by means of the topology of the charge density; each chain is bound by relatively strong N ... H hydrogen bonds, while the chains are linked by weaker C ... N interactions. The effects of the crystal field on topological properties of rho and del(2) rho are explored, and are found to cause changes of up to 10% compared to the gas phase. (C) 1996 American Institute of Physics. [References: 36]
机译:HF / 6-31G **方法对固体HCN的四方,高温形式的定期Hartree-Fock计算是HF / 6-31G **方法,预测每个分子的晶格能量为21.8 kJ mol(-1),与实验值非常吻合19 kJ mol(-1)。基于Bader的零通量分配方案,所得电荷分布的分子内原子分解产生1.734 a.u.的晶体内偶极矩,比分离出的分子增加38%。结果表明,这种偶极矩的增强完全是由于原子间电荷转移的增加,因为原子偶极子实际上被晶体场所减小。晶体中的分子间相互作用通过电荷密度的拓扑来表征。每条链由相对强的N ... H氢键结合,而链则由较弱的C ... N相互作用连接。探索了晶体场对rho和del(2)rho拓扑性质的影响,发现与气相相比,其引起的变化高达10%。 (C)1996年美国物理研究所。 [参考:36]

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