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Cascaded group-additivity ONIOM: A new method to approach CCSD(T)/CBS energies of large aliphatic hydrocarbons

机译:级联可加性ONIOM:一种处理大型脂肪烃CCSD(T)/ CBS能量的新方法

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摘要

We report a cascaded group-additivity (CGA) ONIOM method for high-level energy calculations of large aliphatic hydrocarbon molecules by combining the group additivity and two-layer ONIOM methods. This hybrid method is implemented by partitioning the target molecule into individual groups, which are cascaded via the overlapping between them. The energy of the entire molecule is first calculated at a low level of theory such as M06-2x/cc-pVTZ. Then all the groups and their overlappings are treated at the levels of CCSD(T)/CBS and M06-2x/cc-pVTZ to obtain their energy difference to be used as the energy correction. We selected small-to-middle size aliphatic hydrocarbons including 79 C-4-C-8 molecules as the validation set to demonstrate the feasibility of the CGA-ONIOM method, followed by the calculations of 12 representative C-10, C-12 and C-16 aliphatic hydrocarbons (including normal-, branched-, cyclo- and unsaturated categories). Our calculations agree well with the reference values available in the literature with the modest deviation around 1.0 kcal mol(-1). Compared with the conventional CCSD(T)/CBS calculation of the whole molecule, the computational cost can be dramatically reduced by a factor of similar to 10(2) for molecules with 10 carbons and similar to 10(4) for molecules with 16 carbons. Considering its outstanding computational efficiency and accuracy, our proposed CGA-ONIOM method is promising for combustion chemistry studies of large fuel molecules at a high level of theory. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:我们通过结合基团可加性和两层ONIOM方法,报告了级联可加基团(CGA)ONIOM方法用于大型脂肪烃分子的高能计算。通过将目标分子分成单独的组来实现这种混合方法,这些组通过它们之间的重叠而级联。首先以较低的理论水平(例如M06-2x / cc-pVTZ)计算整个分子的能量。然后,在CCSD(T)/ CBS和M06-2x / cc-pVTZ的水平上对所有组及其重叠部分进行处理,以获得它们的能量差,以用作能量校正。我们选择了包括79个C-4-C-8分子的中小型脂肪烃作为验证集,以证明CGA-ONIOM方法的可行性,然后计算12个代表性C-10,C-12和C-16脂族烃(包括正,支,环和不饱和类别)。我们的计算与文献中的参考值非常吻合,偏差约为1.0 kcal mol(-1)。与整个分子的常规CCSD(T)/ CBS计算相比,计算成本可大幅降低,碳原子数为10的分子近似为10(2),碳原子数为16的分子近似为10(4)。 。考虑到其出色的计算效率和准确性,我们提出的CGA-ONIOM方法具有较高的理论水平,有望用于大型燃料分子的燃烧化学研究。 (C)2018年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

著录项

  • 来源
    《Combustion and Flame》 |2019年第3期|31-43|共13页
  • 作者单位

    Chinese Univ Hong Kong, Dept Mech & Automat Engn, Hong Kong, Peoples R China;

    Chinese Univ Hong Kong, Dept Mech & Automat Engn, Hong Kong, Peoples R China|Chinese Univ Hong Kong, Shenzhen Res Inst, Hong Kong, Peoples R China;

    Chinese Univ Hong Kong, Dept Mech & Automat Engn, Hong Kong, Peoples R China;

    Hong Kong Polytech Univ, Dept Mech Engn, Hung Hom, Kowloon, Hong Kong, Peoples R China;

    Chinese Univ Hong Kong, Dept Mech & Automat Engn, Hong Kong, Peoples R China|Chinese Univ Hong Kong, Shenzhen Res Inst, Hong Kong, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ONIOM; Group additivity; CCSD(T); Large molecule; Enthalpy of formation;

    机译:ONIOM;基团加和;CCSD(T);大分子;形成焓;

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