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Deconstructing the ONIOM Hessian: Investigating Method Combinations for Transition Structures

机译:解构ONIOM Hessian:研究过渡结构的方法组合

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Developments in biochemistry and materials sciences have led to increasing interest in the reactivity of large chemical systems, presenting theoretical and computational challenges that can be addressed with hybrid methods such as ONIOM Here, we show that the diagonalized ONIOM Hessian can be partitioned/deconstructed into contributions from the individual subcalculations—indicating the curvature of their potential energy surfaces (PESs)—without increasing the computational cost. The resulting pseudofrequencies have particular application in the study of transition structures and higher-order saddle points with ONIOM, where we find that an imaginary frequency may result from combining subcalculations for which the corresponding vibrational frequencies are all real. Two cydoaddition reactions, including functionalization of a 150 atom (5,5) single-walled carbon nanotube, demonstrate how this analysis of pseudofrequencies allows identification of critical points where further exploratory work should be carried out to ensure that the ONIOM PES correctly approximates the target.
机译:生物化学和材料科学的发展导致人们对大型化学系统的反应性越来越感兴趣,提出了可以通过混合方法(如ONIOM)解决的理论和计算难题。在这里,我们证明了对角化的ONIOM Hessian可以分区/解构成贡献在不增加计算成本的情况下,从各个子计算中得出(表明其势能面(PES)的曲率)。所产生的伪频率在ONIOM的过渡结构和高阶鞍点的研究中具有特殊的应用,在其中我们发现,虚假频率可能是由于组合了对应的振动频率都是真实的子计算而产生的。两个半胱氨酸加成反应,包括功能化150原子(5,5)单壁碳纳米管,证明了对伪频率的分析如何确定关键点,应进行进一步的研究工作以确保ONIOM PES正确逼近目标。

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