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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >A multicentered approach to integrated QM/QM calculations. Applications to multiply hydrogen bonded systems
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A multicentered approach to integrated QM/QM calculations. Applications to multiply hydrogen bonded systems

机译:集成质量管理/质量管理计算的多中心方法。多重氢键系统的应用

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A multicentered integrated QM/QM technique has been developed. By separating high-level calculations in distinct regions of molecules, the multicentered approach supplants a single large high-level calculation with several smaller calculations. Due to the steep polynomial scaling of traditional ab initio quantum chemical methods, this separation significantly enhances the computational efficiency of QM/QM methods. The straightforward implementation of this multicentered approach is illustrated with several large poly-alcohols that form hydrogen bonds with water. The largest alcohol-water complex contains 81 atoms. For properly selected model systems, this multicentered approach introduces essentially no error in the dissociation energies of these complexes relative to conventional QM/QM schemes. This multicentered technique should be easily extended to other, more general integrated methods (QM/MM, ONIOM, etc). (C) 2003 Wiley Periodicals, Inc. [References: 24]
机译:已经开发了一种多中心集成的QM / QM技术。通过分离分子不同区域中的高级计算,多中心方法取代了单个大型高级计算和几个较小的计算。由于传统的从头算术量子化学方法的多项式比例缩放,这种分离显着提高了QM / QM方法的计算效率。几种大型多元醇可与水形成氢键,说明了这种多中心方法的直接实现。最大的醇-水配合物包含81个原子。对于正确选择的模型系统,相对于常规QM / QM方案,这种多中心方法基本上不会在这些配合物的解离能中引入任何误差。这种多中心技术应易于扩展到其他更通用的集成方法(QM / MM,ONIOM等)。 (C)2003 Wiley Periodicals,Inc. [参考:24]

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