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Computational characterization of nucleotide bases: Molecular surface electrostatic potentials and local ionization energies, and local polarization energies

机译:核苷酸碱基的计算表征:分子表面静电势和局部电离能以及局部极化能

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Electrostatic potentials and local ionization energies have been computed at the HF/6-31G* level on the molecular surfaces of the five nucleotide bases. The potentials are analyzed in terms of their most positive and negative values as well as several statistically defined quantities that reflect their patterns over the entire surface. Considerable charge separation and variability are found for all five molecules. The results are consistent with the base pairing that is known to occur. The observed reactive behavior toward electrophiles can be interpreted in terms of the complementary roles of the surface potential and the local electron lability. Local polarization energies, corresponding to a test charge being placed at specific points above the molecules, are also calculated (HF/6-31+G*), and their relationship to the local ionization energies is examined. (C) 2001 John Wiley & Sons, Inc. [References: 65]
机译:在五个核苷酸碱基的分子表面上以HF / 6-31G *浓度计算出静电势和局部电离能。根据电位的最大正值和负值以及反映整个表面模式的几个统计定义的量来分析电势。发现所有五个分子都有相当大的电荷分离和可变性。结果与已知发生的碱基配对一致。观察到的对亲电子试剂的反应行为可以用表面电势和局部电子不稳定性的互补作用来解释。还计算了对应于放置在分子上方特定位置的测试电荷的局部极化能(HF / 6-31 + G *),并检查了它们与局部电离能的关系。 (C)2001 John Wiley&Sons,Inc. [参考:65]

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