Houjou Hirohiko
Institute of Industrial Science, University of Tokyo, 4-6-1 Komaba, Meguro-ku, Tokyo 153-8505, Japan.
J Chem Theory Comput. 2009 Jul 14;5(7):1814-21. doi: 10.1021/ct900169f.
We have formulated a procedure for evaluating the anisotropic stiffness of a molecular assembly. First, we show how to reduce the dimensions of the matrices that appear in a conventional Hessian analysis of mass-weighted coordination by using a 12-dimensional transverse-rotational basis set for expansion. This treatment yields matrix representations of the intermolecular force and inertial load of the constituent molecules. Next we applied this procedure to 2-aminopyridine dimers and numerically analyzed the low-frequency (∼THz region) normal-mode vibrations. By validating the elements of stiffness matrix, this study exemplifies a derivation of the parameters necessary for the normal-mode analysis of a large system like a crystal, without any explicit representation of the potential functions.
我们已经制定了一种评估分子组装体各向异性刚度的程序。首先,我们展示了如何通过使用一个12维横向旋转基组进行展开,来降低在质量加权配位的传统海森矩阵分析中出现的矩阵维度。这种处理方法产生了组成分子的分子间力和惯性载荷的矩阵表示。接下来,我们将此程序应用于2-氨基吡啶二聚体,并对低频(~太赫兹区域)的正常模式振动进行了数值分析。通过验证刚度矩阵的元素,本研究例证了在没有任何势函数显式表示的情况下,推导像晶体这样的大系统正常模式分析所需参数的过程。