Birkholz Adam B, Schlegel H Bernhard
Department of Chemistry, Wayne State University, Detroit, Michigan, 48202.
J Comput Chem. 2015 Jun 5;36(15):1157-66. doi: 10.1002/jcc.23910. Epub 2015 Apr 2.
Optimization of a transition state typically requires both a good initial guess of the molecular structure and one or more computationally demanding Hessian calculations to converge reliably. Often, the transition state being optimized corresponds to the barrier in a chemical reaction where bonds are being broken and formed. Utilizing the geometries and bonding information for reactants and products, an algorithm is outlined to reliably interpolate an initial guess for the transition state geometry. Additionally, the change in bonding is also used to increase the reliability of transition state optimizations that utilize approximate and updated Hessian information. These methods are described and compared against standard transition state optimization methods.
过渡态的优化通常既需要对分子结构有良好的初始猜测,也需要进行一次或多次计算量较大的海森矩阵计算才能可靠地收敛。通常,正在优化的过渡态对应于化学反应中的能垒,在此过程中化学键会发生断裂和形成。利用反应物和产物的几何结构及键合信息,概述了一种算法,用于可靠地内插过渡态几何结构的初始猜测。此外,键合的变化还用于提高利用近似和更新的海森矩阵信息进行过渡态优化的可靠性。对这些方法进行了描述,并与标准的过渡态优化方法进行了比较。