首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Computation of large systems with an economic basis set: Structures and reactivity indices of nucleic acid base pairs from density functional theory
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Computation of large systems with an economic basis set: Structures and reactivity indices of nucleic acid base pairs from density functional theory

机译:具有经济基础集的大型系统的计算:基于密度泛函理论的核酸碱基对的结构和反应性指数

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We show here that an economic basis set can describe nucleic acid base pairs involving the hydrogen bond interactions in density functional calculations. The economic basis set in which the polarization function is added only to oxygen and nitrogen atoms of strong electronegativity can predict reliable geometric structures and dipole moment of nucleic acid base pairs, comparable to those obtained from the basis set of 6-31G* in B3LYP calculations. Combining single point calculations with the standard basis set on the geometric structures optimized by the economic basis set, the present approach has predicted accurate natural bond orbital charge, binding energy, electronegativity, hardness, softness, and electrophilicity index. The principle for basis selection presented in this study can be regarded as a general guideline in the computation of large biological systems with considerably high accuracy and low computational expense. (C) 2007 Wiley Periodicals, Inc.
机译:我们在这里显示,经济基础集可以描述密度函数计算中涉及氢键相互作用的核酸碱基对。仅将极化函数添加到强电负性的氧和氮原子上的经济基础集可以预测核酸碱基对的可靠几何结构和偶极矩,与在B3LYP计算中从6-31G *的基础集获得的可比。将单点计算与基于经济基础集优化的几何结构的标准基础集相结合,本方法已预测出准确的自然键轨道电荷,结合能,电负性,硬度,柔软度和亲电性指数。这项研究中提出的基础选择原则可以被视为大型生物系统的计算中的一般准则,具有很高的准确性和低的计算费用。 (C)2007 Wiley期刊公司

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