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G3(MP2)-CEP theory and applications for compounds containing atoms from representative first, second and third row elements of the periodic table

机译:G3(MP2)-CEP的理论及其在元素周期表中具有代表性的第一,第二和第三行元素中包含原子的化合物的应用

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The compact effective potential (CEP) pseudopotential was adapted to the G3(MP2) theory, herein referred to as G3(MP2)-CEP, and applied to the calculation of enthalpies of formation, ionization energies, atomization energies, and electron and proton affinities for 446 species containing elements of the 1st, 2nd, and 3rd rows of the periodic table. A total mean absolute deviation of 1.67 kcal mol(-1) was achieved with G3(MP2)-CEP, compared with 1.47 kcal mol(-1) for G3(MP2). Electron affinities and enthalpies of formation are the properties exhibiting the lowest deviations with respect to the original G3(MP2) theory. The use of pseudopotentials and composite theories in the framework of the G3 theory is feasible and compatible with the all electron approach.
机译:紧凑有效电势(CEP)伪电势适用于G3(MP2)理论(在本文中称为G3(MP2)-CEP),并用于计算形成焓,电离能,雾化能以及电子和质子亲和力446种含有元素周期表第一,第二和第三行元素的物种。与G3(MP2)的1.47 kcal mol(-1)相比,G3(MP2)-CEP实现了1.67 kcal mol(-1)的总平均绝对偏差。电子亲和力和形成焓是相对于原始G3(MP2)理论表现出最低偏差的特性。在G3理论的框架内使用伪势和复合理论是可行的,并且与全电子方法兼容。

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