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The calculation of intermolecular interaction energies

机译:分子间相互作用能的计算

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摘要

All life on our earth can be viewed as an application of supramolecular chemistry, with noncovalent interactions playing a central role. The knowledge of total interaction energies as well as their components is topical for understanding the nature of these interactions and, in a broader sense, also for understanding the nature of stabilization of noncovalent systems like biomacromolecules. Accurate data on interaction energies can only be obtained from coupled-cluster with single and double and perturbative triple excitations (CCSD(T)) calculations performed with extended basis sets. The CCSDD(T) calculations thus provide benchmark data which can be used for testing and/or parameterizing other, computationally economical techniques. In the present review the applicability and performance of various recently introduced wavefunction and density functional methods are examined in detail.
机译:我们地球上的所有生命都可以看作是超分子化学的一种应用,其中非共价相互作用起着核心作用。总相互作用能及其组成的知识对于理解这些相互作用的性质以及从广义上来说对于理解非共价系统(如生物大分子)的稳定性质至关重要。关于相互作用能的准确数据只能从具有扩展基组的单,双和微扰三重激发(CCSD(T))计算的耦合簇中获得。 CCSDD(T)计算因此提供了基准数据,该基准数据可用于测试和/或参数化其他计算经济的技术。在本综述中,详细研究了各种最近引入的波函数和密度函数方法的适用性和性能。

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