使用模型势MCP计算了含重元素的氢键和van der Waals相互作用体系的几何结构与结合能。结果表明,在MP2水平,应用MCP基组研究分子间相互作用时,可以使用Boys和Bernardi提出的均衡校正法进行基函数重叠误差(BSSE)校正;与同一水平的全电子...使用模型势MCP计算了含重元素的氢键和van der Waals相互作用体系的几何结构与结合能。结果表明,在MP2水平,应用MCP基组研究分子间相互作用时,可以使用Boys和Bernardi提出的均衡校正法进行基函数重叠误差(BSSE)校正;与同一水平的全电子基组相比,经BSSE校正后的结合能ΔECP平均相对误差为5.2%,结果准确,但是BSSE普遍较大;使用MCP基组的计算时间远小于全电子基组,MCP方法的效率随原子的电子层数增加而提高。展开更多
The density function B3LYP method has been used to optimize the geometries of the luteolin, thymine and lute- olin-thymine complexes at 6-31+G* basis. The vibrational frequencies have been studied at the same level ...The density function B3LYP method has been used to optimize the geometries of the luteolin, thymine and lute- olin-thymine complexes at 6-31+G* basis. The vibrational frequencies have been studied at the same level to ana- lyze these seventeen complexes, respectively. Theories of atoms in molecules (AIM) and natural bond orbital (NBO) have been utilized to investigate the hydrogen bonds involved in all the systems. The interaction energies of the complexes corrected by basis set superposition error are between -93.00-76.69 kJ/mol. The calculating results indicate that strong hydrogen bonding interactions have been found in the luteolin-thymine complexes.展开更多
文摘使用模型势MCP计算了含重元素的氢键和van der Waals相互作用体系的几何结构与结合能。结果表明,在MP2水平,应用MCP基组研究分子间相互作用时,可以使用Boys和Bernardi提出的均衡校正法进行基函数重叠误差(BSSE)校正;与同一水平的全电子基组相比,经BSSE校正后的结合能ΔECP平均相对误差为5.2%,结果准确,但是BSSE普遍较大;使用MCP基组的计算时间远小于全电子基组,MCP方法的效率随原子的电子层数增加而提高。
文摘The density function B3LYP method has been used to optimize the geometries of the luteolin, thymine and lute- olin-thymine complexes at 6-31+G* basis. The vibrational frequencies have been studied at the same level to ana- lyze these seventeen complexes, respectively. Theories of atoms in molecules (AIM) and natural bond orbital (NBO) have been utilized to investigate the hydrogen bonds involved in all the systems. The interaction energies of the complexes corrected by basis set superposition error are between -93.00-76.69 kJ/mol. The calculating results indicate that strong hydrogen bonding interactions have been found in the luteolin-thymine complexes.