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首页> 外文期刊>Theoretical chemistry accounts >Generalized hybrid orbital for the treatment of boundary atoms in combined quantum mechanical and molecular mechanical calculations using the semiempirical parameterized model 3 method
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Generalized hybrid orbital for the treatment of boundary atoms in combined quantum mechanical and molecular mechanical calculations using the semiempirical parameterized model 3 method

机译:使用半经验参数化模型3方法在量子力学和分子力学的组合计算中处理边界原子的广义混合轨道

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The application of combined quantum mechanical (QM) and molecular mechanical methods to large molecular systems requires an adequate treatment of the boundary between the two approaches. In this article, we extend the generalized hybrid orbital (GHO) method to the semiempirical parameterized model 3 (PM3) Hamiltonian combined with the CHARMM force field. The GHO method makes use of four hybrid orbitals, one of which is included in the QM region in self-consistent field optimization and three are treated as auxiliary orbitals that do not participate in the QM optimization, but they provide an effective electric field for interactions. An important feature of the GHO method is that the semiempirical parameters for the boundary atom are transferable, and these parameters have been developed for a carbon boundary atom consistent with the PM3 model. The combined GHO-PM3/CHARMM model has been tested on molecular geometry and proton affinity for a series of organic compounds. [References: 34]
机译:将量子力学(QM)和分子力学方法相结合应用于大分子系统需要对两种方法之间的边界进行适当处理。在本文中,我们将广义混合轨道(GHO)方法扩展到结合CHARMM力场的半经验参数化模型3(PM3)哈密顿量。 GHO方法利用了四个混合轨道,其中之一包含在自洽场优化的QM区域中,其中三个被视为不参与QM优化的辅助轨道,但它们为相互作用提供了有效的电场。 GHO方法的一个重要特征是边界原子的半经验参数是可转移的,并且已经为与PM3模型一致的碳边界原子开发了这些参数。 GHO-PM3 / CHARMM组合模型已经过分子几何形状和质子对一系列有机化合物的亲和力测试。 [参考:34]

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