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Theoretical characterization of the potential energy surface for NH + NO

机译:NH + NO势能面的理论表征

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摘要

The potential energy surface (PES) for NH + NO was characterized using complete active space self-consistent field (CASSCF) gradient calculations to determine the stationary point geometries and frequencies followed by CASSCF/internally contracted configuration interaction (CCI) calculations to refine the energetics. The present results are in qualitative accord with the BAC-MP4 calculations, but there are differences as large as 8 kcal/mol in the detailed energetics. Addition of NH to NO on a (2)A' surface, which correlated with N2 + OH or H + N2O products, involves barriers of 3.2 kcal/mol (trans) and 6.3 kcal/mol (cis). Experimental evidence for these barriers is found in earlier works. The (2)A' surface has no barrier to addition, but does not correlate with products. Surface crossings between the barrierless (2)A' surface and the (2)A' surface may be important. Production of N2 + OH products is predicted to occur via a planar saddle point of (2)A' symmetry. This is in accord with the preferential formation of II(A') lambda doublet levels of OH in earlier experiments. Addition of NH (1)delta to NO is found to occur on an excited state surface and is predicted to lead to N2O product as observed in earlier works.
机译:NH + NO的势能面(PES)的特征在于使用完整的活动空间自洽场(CASSCF)梯度计算来确定固定点的几何形状和频率,然后进行CASSCF /内部收缩构型相互作用(CCI)计算以完善能量学。目前的结果与BAC-MP4的计算定性一致,但详细的能量学差异最大为8 kcal / mol。在(2)A'表面将NH加到NO中,这与N2 + OH或H + N2O产物相关,其势垒分别为3.2 kcal / mol(反式)和6.3 kcal / mol(顺式)。这些障碍的实验证据可在早期工作中找到。 (2)A′表面没有添加障碍,但与产物无关。无障碍(2)A'表面和(2)A'表面之间的表面交叉可能很重要。 N2 + OH产物的产生预计将通过(2)A'对称的平面鞍点发生。这与早期实验中优先形成OH的II(A')λ双峰态相一致。 NH(1)δ添加到NO被发现在激发态表面上发生,并且被预测会导致生成N2O产物,如早期工作中所观察到的。

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    Walch, Stephen P.;

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  • 年度 1992
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