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首页> 外文期刊>International Journal of Quantum Chemistry >All-electron all-virtual spinor space relativistic coupled-cluster calculations for molecules of heavy elements using contracted basis set: Prediction of atomization energy of PbH4
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All-electron all-virtual spinor space relativistic coupled-cluster calculations for molecules of heavy elements using contracted basis set: Prediction of atomization energy of PbH4

机译:重元素分子的全电子全虚拟自旋空间相对论耦合簇的压缩基集计算:PbH4雾化能的预测

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All-electron all-virtual spinor space (AVSS) relativistic second order Moller-Plesset (RMP2), coupled-cluster singles doubles (RCCSD), RCCSD(T) (RCCSD Plus the triple excitation correction included perturbationally) calculations are reported for tetrahedral (T-d) PbH4 at various bond lengths using our finite contracted universal Gaussian basis set. Our relativistic calculations predict the RMP2, RCCSD, and RCCD(T) molecular correlation energy for PbH4 as -2.2563, -2.1917, and -2.2311 au, respectively. Ours are the first AVSS RMP2, RCCSD, and RCCSD(T) molecular calculations for electron correlation energy of the heavy element molecule PbH4. All-electron AVSS coupled-cluster calculations for the Pb atom are also reported and these were used (in conjunction with the corresponding molecular electron correlation energy calculations for PbH4) to predict atomization energy (A(e)) of PbH4 at various levels of coupled-cluster electron correlation. Our predicted atomization energy for PbH4 (at the optimized bond length of 1.749 angstrom) with our Dirac-Fock, RM.P2, RCCSD, and RCCSD(T) calculations is 5.73, 7.27, 11.24, and 11.62 eV, respectively. Neither such relativistic molecular correlation energy nor atomization energy has been reported so far for heavy polyatomic with 86 electrons. Calculation of relativistic molecular correlation energy is no more a nightmare, and bottlenecks are broken for the calculation of relativistic correlation as well as atomization energy for molecules of heavy elements. (c) 2008 Wiley Periodicals, Inc.
机译:报告了四面体的全电子全虚拟自旋空间(AVSS)相对论二阶Moller-Plesset(RMP2),耦合簇单打双曲(RCCSD),RCCSD(T)(RCCSD加上扰动包括三重激发校正)计算。 Td)使用我们的有限紧缩通用高斯基集在各种键长下的PbH4。我们的相对论计算预测PbH4的RMP2,RCCCD和RCCD(T)分子相关能分别为-2.2563,-2.1917和-2.2311 au。我们的工作是针对重元素分子PbH4的电子相关能的第一个AVSS RMP2,RCCCD和RCCSD(T)分子计算。还报道了Pb原子的全电子AVSS耦合簇计算,并将其(与相应的PbH4分子电子相关能计算相结合)用于预测各种耦合水平下PbH4的雾化能(A(e)) -簇电子相关性。我们用Dirac-Fock,RM.P2,RCCSD和RCCSD(T)计算得出的PbH4的雾化能量(优化的键长为1.749埃)分别为5.73、7.27、11.24和11.62 eV。迄今为止,对于具有86个电子的重多原子,都没有报道过这种相对论分子相关能或雾化能。相对论分子相关能的计算不再是一场噩梦,相对论相关性以及重元素分子的雾化能的计算被打破了瓶颈。 (c)2008 Wiley期刊公司

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