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Distance and angular holonomic constraints in molecular simulations

机译:分子模拟中的距离和角度完整约束

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摘要

Finding the energy minima of systems with constraints is a challenging problem. We develop a minimization method based on the projection operator technique to enforce distance and angle constraints in minimization and reaction-path dynamics. The application of the projection operator alone does not maintain the constraints, i.e., they are slightly violated. Therefore, we use the SHAKE-methodology to enforce the constraints after each minimization step. We have extended θ -SHAKE for bend angles and introduce φ -SHAKE and -SHAKE to constrain dihedral and out-of-plane angles, respectively. Two case studies are presented: (1) A mode analysis of united-atom n -butane with various internal degrees of freedom kept frozen and (2) the minimization of chromene at a fixed approach toward the catalytic site of a (salen)Mn. The obtained information on energetics can be used to explain why specific enantioselectivity is observed. Previous minimization methods work for the free molecular case, but fail when molecules are tightly confined.
机译:寻找具有约束的系统的能量最小值是一个具有挑战性的问题。我们开发了一种基于投影算子技术的最小化方法,以在最小化和反应路径动力学中强制距离和角度约束。单独使用投影算子并不能保持约束,即,它们略有违反。因此,我们使用SHAKE方法在每个最小化步骤之后强制执行约束。我们扩展了θ-SHAKE的弯曲角度,并引入了φ-SHAKE和-SHAKE分别约束二面角和平面外角。提出了两个案例研究:(1)保持冻结的各种内部自由度的统一原子正丁烷的模式分析;(2)以固定方式朝(salen)Mn的催化位点最小化色烯。获得的有关高能学的信息可以用来解释为什么观察到特定的对映选择性。以前的最小化方法适用于自由分子的情况,但是当分子被严格限制时会失败。

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