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首页> 外文期刊>International Journal of Quantum Chemistry >Theoretical study of cooperative effects in the homo- and heteromeric hydrogen bond chains (HCN)(n)-HF with n=1, 2, and 3
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Theoretical study of cooperative effects in the homo- and heteromeric hydrogen bond chains (HCN)(n)-HF with n=1, 2, and 3

机译:n = 1、2和3的同型和异型氢键链(HCN)(n)-HF中的协同效应的理论研究

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Theoretical investigations concerning the formation of hydrogen bonds in both homomeric, (HCN)(n), and heteromeric clusters of the type (HCN)(n)-HF (n = 1, 2, and 3) have been performed through ab initio molecular orbital calculations at the second-order Moller-Plesset (MP2) and density functional theory (DFT)/B3LYP levels, with the 6-311 + + G(d,p) basis set. The formation of hydrogen bonds is investigated in terms of changes in structural, electronic, and vibrational parameters of the free species. Important parameters include the increment in the distance of the HF proton donor species, the increment in the HC distance of HCN moiety, and the amount of intermolecular charge transfer between the HCN species in the (HCN)(n) group. It is interesting to point out the different behavior in the HC distance as HCN acts simultaneously as a proton acceptor, proton donor, and a proton donor and acceptor. Other important results concern the cooperative effect (CE) in terms of the stabilization energy and dipole moment. Both CEs increase with cluster size and are more pronounced for the heteroclusters. The HF stretching frequency is red-shifted on going in the direction (HCN)-HF --> (HCN)(2) -HF --> (HCN)(3)-HF. This trend is in agreement with the following order of stabilization energies: Delta E-HCN center dot center dot center dot HF < Delta E-(HCN)2 center dot center dot center dot HF < Delta E-(HCN)3 center dot center dot center dot HF. (C) 2006 Wiley Periodicals, Inc.
机译:通过从头算分子进行了有关在(HCN)(n)-HF型(HCN)(n)-HF(n = 1、2和3)的异构体簇中形成氢键的理论研究在二阶Moller-Plesset(MP2)和密度泛函理论(DFT)/ B3LYP级别进行轨道计算,并设置6-311 + + G(d,p)。根据自由物种的结构,电子和振动参数的变化研究了氢键的形成。重要的参数包括HF质子供体种类的距离增加,HCN部分的HC距离增加以及(HCN)(n)组中HCN种类之间的分子间电荷转移量。有趣的是,由于HCN同时充当质子受体,质子供体以及质子供体和受体,因此指出了HC距离的不同行为。其他重要结果涉及稳定能量和偶极矩方面的协同效应(CE)。两个CE都随簇的大小而增加,并且对于异簇而言更为明显。 HF拉伸频率在(HCN)-HF->(HCN)(2)-HF->(HCN)(3)-HF方向上发生红移。此趋势与稳定能的以下顺序一致:Delta E-HCN中心点中心点中心点HF

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