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Isoelectronic analogue of oxywater: A parametric two-electron reduced-density-matrix study of ammonia oxide

机译:含氧水的等电子类似物:氧化氨的参量双电子降密度矩阵研究

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A parametrization of the two-electron reduced density matrix (2-RDM) provides energies that improve on the accuracy of coupled electron-pair theories including coupled cluster with single-double excitations at the computational cost of configuration interaction with single-double excitations [Mazziotti, Phys. Rev. Lett. 101, 253002 (2008)]. This parametric 2-RDM method was recently employed to study the isomerization of oxywater to hydrogen peroxide where it predicted a lower energy barrier from oxywater (2.1kcalmol ~(-1)) than coupled cluster methods (4.2kcalmol ~(-1)). In this paper we study an isoelectronic analogue, the isomerization of ammonia oxide to hydroxylamine. In the extrapolated basis-set limit, using the augmented correlation-consistent polarized valance quadruple-zeta (aug-cc-pVQZ) basis set, the parametric 2-RDM method predicts a 27.5kcalmol ~1 barrier from ammonia oxide to hydroxylamine. We report reaction energies, barriers, geometries, and natural-orbital occupation numbers for the ammonia-oxide reaction and compare them to those from the oxywater reaction. We find that the parametric 2-RDM method agrees with dynamic correlation wavefunction methods when the multi-reference character of the system is small as in the ammonia-oxide isomerization computed here but that it captures additional multi-reference correlation, usually requiring a multi-reference method, when such correlation increases as in the oxywater isomerization.
机译:双电子降密度矩阵(2-RDM)的参数化提供了能量,从而提高了耦合电子对理论(包括具有单双激发的耦合簇的电子对理论)的准确性,但其计算成本与单双激发的相互作用[Mazziotti ,物理牧师101,253002(2008)]。最近,该参数2-RDM方法用于研究氧水到过氧化氢的异构化,该方法预测氧水的能垒(2.1kcalmol〜(-1))比偶合簇方法(4.2kcalmol〜(-1))低。在本文中,我们研究了一种等电子类似物,即氨氧化物异构化为羟胺。在外推基集极限中,使用增强的相关一致的极化价四重ζ(aug-cc-pVQZ)基集,参数2-RDM方法预测从氧化氨到羟胺的27.5kcalmol〜1势垒。我们报告了氨氧化物反应的反应能,势垒,几何形状和自然轨道占据数,并将它们与氧水反应的反应能进行比较。我们发现,当系统的多参考特征较小时(如此处计算的氨氧化物异构化),参数2-RDM方法与动态相关波函数方法相符,但它捕获了其他多参考相关性,通常需要多参考相关性。参考方法,当这种相关性增加时,如在氧水异构化中。

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