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A TEST OF THE NEW INTEGRATED MO+MM (IMOMM) METHOD FOR THE CONFORMATIONAL ENERGY OF ETHANE AND N-BUTANE

机译:乙烷和正丁烷的构象能新的集成MO + MM(IMOMM)方法的测试

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Test calculations of the newly developed ''Integrated Molecular Orbital + Molecular Mechanics'' (IMOMM) method were performed for the optimized equilibrium and transition structures and energies of ethane and n-butane. In this method, the total energy of a large molecular system is expressed as a sum of the MO energy of the small ''model'' system and a modified MM energy of the ''real'' system, and full geometry optimization is carried out using the gradient of this total energy. Various schemes of partition of the system into the MO part and the MM part, including some not intended in the original design of the method, were examined and compared with the pure ab initio MO and the pure MM results. In most reasonable partition schemes, the IMOMM method can reproduce the pure ab initio and the pure MM geometries and energies quite well. (C) 1996 John Wiley & Sons, Inc. [References: 28]
机译:对乙烷和正丁烷的最佳平衡,过渡结构和能量进行了新开发的“分子轨道+分子力学”(IMOMM)方法的测试计算。在这种方法中,大分子系统的总能量表示为小型“模型”系统的MO能量和“实际”系统的修正MM能量的总和,并进行了完整的几何优化用这个总能量的梯度研究了将系统划分为MO部分和MM部分的各种方案,包括该方法的原始设计中不打算使用的一些方案,并将其与纯从头开始的MO和纯MM结果进行了比较。在最合理的分配方案中,IMOMM方法可以很好地重现纯的从头开始以及纯MM的几何形状和能量。 (C)1996 John Wiley&Sons,Inc. [参考:28]

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