首页> 外文期刊>Journal of chemical theory and computation: JCTC >Zero-point Energy is Needed in Molecular Dynamics Calculations to Access the Saddle Point for H+HCN→H2CN~* and cis/trans-HCNH~* on a New Potential Energy Surface
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Zero-point Energy is Needed in Molecular Dynamics Calculations to Access the Saddle Point for H+HCN→H2CN~* and cis/trans-HCNH~* on a New Potential Energy Surface

机译:分子动力学计算中需要零点能量才能在新的势能面上接近H + HCN→H2CN〜*和cis / trans-HCNH〜*的鞍点

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摘要

We calculate the probabilities for the association reactions H +HCN→H2CN~* and cis/trons-HCNH~*, using quasiclassical trajectory (QCT) and classical trajectory (CT) calculations, on a new global ab initio potential energy surface (PES) for H2CN including the reaction channels. The surface is a linear least-squares fit of roughly 60 000 CCSD(T)-F12b/aug-cc-pVDZ electronic energies, using a permutationally invariant basis with Morse-type variables. The reaction probabilities are obtained at a variety of collision energies and impact parameters. Large differences in the threshold energies in the two types of dynamics calculations are traced to the absence of zero-point energy in the CT calculations. We argue that the QCT threshold energy is the realistic one. In addition, trajectories find a direct pathway to trans-HCNH, even though there is no obvious transition state (TS) for this pathway. Instead the saddle point (SP) for the addition to cis-HCNH is evidently also the TS for direct formation of trans-HCNH.
机译:我们使用准经典轨迹(QCT)和经典轨迹(CT)计算,在新的全局从头计算势能面(PES)上,计算了缔合反应H + HCN→H2CN〜*和顺/ trons-HCNH〜*的概率H2CN包括反应通道。该表面是线性最小二乘拟合,大约使用60 000 CCSD(T)-F12b / aug-cc-pVDZ电子能量,使用具有Morse型变量的置换不变性基础。在各种碰撞能量和冲击参数下获得反应概率。两种动力学计算中阈值能量的巨大差异可归因于CT计算中不存在零点能量。我们认为QCT阈值能量是现实的能量。此外,即使该途径没有明显的过渡态(TS),其轨迹也可找到直接通往HCNH的途径。相反,添加到顺式-HCNH的鞍点(SP)显然也是直接形成反式-HCNH的TS。

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