...
首页> 外文期刊>Theoretical chemistry accounts >Accurate computational thermochemistry from explicitly correlated coupled-cluster theory
【24h】

Accurate computational thermochemistry from explicitly correlated coupled-cluster theory

机译:显式相关联簇理论的精确计算热化学

获取原文
获取原文并翻译 | 示例
           

摘要

Explicitly correlated coupled-cluster theory has developed into a valuable computational tool for the calculation of electronic energies close to the limit of a complete basis set of atomic orbitals. In particular at the level of coupled-cluster theory with single and double excitations (CCSD), the space of double excitations is quickly extended towards a complete basis when Slater-type geminals are added to the wave function expansion. The purpose of the present article is to demonstrate the accuracy and efficiency that can be obtained in computational thermochemistry by a CCSD model that uses such Slater-type geminals. This model is denoted as CCSD(F12), where the acronym F12 highlights the fact that the Slater-type geminals are functions f(r_(12)) of the interelectronic distances r_(12) in the system. The performance of explicitly correlated CCSD(F12) coupled-cluster theory is demonstrated by computing the atomization energies of 73 molecules (containing H, C, N, O, and F) with an estimated root-mean-square deviation from the values compiled in the Active Thermochemical Tables of σ = 0.10 kJ/mol per valence electron. To reach this accuracy, not only the frozen-core CCSD basis-set limit but also high-order excitations (connected triple and quadruple excitations), core-valence correlation effects, anharmonic vibrational zero-point energies, and scalar and spin-orbit relativistic effects must be taken into account.
机译:显式关联的耦合簇理论已发展成为一种有价值的计算工具,可用于计算接近于完整原子轨道基本集极限的电子能量。特别是在具有单激励和双激励(CCSD)的耦合集群理论层面,当将Slater型双子星添加到波动函数扩展中时,双激励的空间会迅速扩展到一个完整的基础。本文的目的是演示通过使用此类Slater型双子晶体的CCSD模型可以在计算热化学中获得的准确性和效率。此模型表示为CCSD(F12),其中首字母缩写F12强调了一个事实,即Slater型双子是系统中电子间距r_(12)的函数f(r_(12))。通过计算73个分子(包含H,C,N,O和F)的原子化能,并与从Css(F12)汇编值得出的估计均方根偏差,可以证明其显式相关的CCSD(F12)耦合簇理论的性能。每价电子σ= 0.10 kJ / mol的活性热化学表。为了达到此精度,不仅冻结核心CCSD基本集限制,还包括高阶激励(连接的三重和四重激励),铁心价相关效应,非谐振动零点能量以及标量和自旋相对论必须考虑效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号