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首页> 外文期刊>The Journal of Chemical Physics >EXTENSION OF GAUSSIAN-2 THEORY TO MOLECULES CONTAINING THIRD-ROW ATOMS GA-KR
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EXTENSION OF GAUSSIAN-2 THEORY TO MOLECULES CONTAINING THIRD-ROW ATOMS GA-KR

机译:高斯2理论对包含第三行原子GA-KR的分子的扩展

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Gaussian-2 (G2) theory has been extended to molecules containing the third-row nontransition elements Ga-Kr. Basis sets compatible with those used in G2 theory for molecules containing first- and second-row atoms have been derived. Spin-orbit corrections for atoms and molecules having spatially degenerate states (P-2, P-3 for atoms and (2) Pi for molecules in this work) are included explicitly in the G2 energies. The average absolute deviation from experiment for 40 test reactions is 1.37 kcal/mol. In contrast to the situation for first- and second-row molecules, inclusion of spin-orbit effects is very important in attaining accurate energies for molecules containing third-row atoms. Without spin-orbit effects, the average absolute deviation is 2.36 kcal/mol. (C) 1995 American Institute of Physics. [References: 45]
机译:高斯2(G2)理论已扩展到包含第三行非过渡元素Ga-Kr的分子。已经推导出了与G2理论中使用的那些基础集兼容的,包含第一行和第二行原子的分子的基础集。 G2能量中明确包含对具有空间退化状态的原子和分子(原子为P-2,P-3和分子为(2)Pi的自旋轨道校正)。 40个测试反应与实验的平均绝对偏差为1.37 kcal / mol。与第一行和第二行分子的情况相反,自旋轨道效应的包含对于获得包含第三行原子的分子的准确能量非常重要。没有自旋轨道效应,平均绝对偏差为2.36 kcal / mol。 (C)1995年美国物理研究所。 [参考:45]

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