首页> 外文期刊>The Journal of Chemical Physics >MODIFICATION OF THE GAUSSIAN-2 THEORETICAL MODEL - THE USE OF COUPLED-CLUSTER ENERGIES, DENSITY-FUNCTIONAL GEOMETRIES, AND FREQUENCIES
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MODIFICATION OF THE GAUSSIAN-2 THEORETICAL MODEL - THE USE OF COUPLED-CLUSTER ENERGIES, DENSITY-FUNCTIONAL GEOMETRIES, AND FREQUENCIES

机译:高斯2理论模型的修改-耦合簇能量,密度函数几何和频率的使用

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A family of modified GAUSSIAN-2 (G2M) calculational schemes have been proposed, based on geometry optimization and vibrational frequency calculations using the hybrid density-functional approach, and electron correlation evaluation using the coupled-cluster methods. The most accurate model, called G2M(RCC), gives the average absolute deviation of calculated atomization energies from experiment for 32 first-row compounds of 0.88 kcal/mol. The other two methods, called G2M(RCC,MP2) and G2M(rcc,MP2), exhibit the average absolute deviations of 1.15 and 1.28 kcal/mol, respectively and can be used for the calculations of molecules and radicals of larger sizes containing up to six to seven heavy atoms. The G2M(rcc,MP2) model demonstrates an accuracy comparable to that of G2(MP2) and requires less intensive computations than the latter. The preference of the G2M(RCC) methods over the original G2 is expected to be particularly significant for the open shell systems with large spin contamination. (C) 1995 American Institute of Physics. [References: 46]
机译:基于几何优化和使用混合密度泛函方法的振动频率计算,以及使用耦合簇方法进行电子相关性评估,提出了一系列改进的GAUSSIAN-2(G2M)计算方案。最精确的模型称为G2M(RCC),它给出了从32种0.88 kcal / mol的第一行化合物的实验计算得出的雾化能量的平均绝对偏差。另两种方法分别称为G2M(RCC,MP2)和G2M(rcc,MP2),其平均绝对偏差分别为1.15和1.28 kcal / mol,可用于计算包含六到七个重原子G2M(rcc,MP2)模型证明了与G2(MP2)相当的准确性,并且比后者需要更少的密集计算。对于具有大量自旋污染的开壳系统,预计G2M(RCC)方法相对于原始G2的偏爱特别重要。 (C)1995年美国物理研究所。 [参考:46]

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