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A gradient-directed Monte Carlo approach to molecular design

机译:梯度定向蒙特卡洛分子设计方法

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摘要

The recently developed linear combination of atomic potentials (LCAP) approach [M. Wang , J. Am. Chem. Soc. 128, 3228 (2006)] allows continuous optimization in a discrete chemical space, and thus is useful in the design of molecules for targeted properties. To address further challenges arising from the rugged, continuous property surfaces in the LCAP approach, we develop a gradient-directed Monte Carlo (GDMC) strategy as an augmentation to the original LCAP optimization method. The GDMC method retains the power of exploring molecular space by utilizing local gradient information computed from the LCAP approach to jump between discrete molecular structures. It also allows random MC moves to overcome barriers between local optima on property surfaces. The combined GDMC-LCAP approach is demonstrated here for optimizing nonlinear optical properties in a class of donor-acceptor substituted benzene and porphyrin frameworks. Specifically, one molecule with four nitrogen atoms in the porphyrin ring was found to have a larger first hyperpolarizability than structures with the conventional porphyrin motif. (C) 2008 American Institute of Physics.
机译:最近开发的原子势线性组合(LCAP)方法[M.王建安化学Soc。 128,3228(2006)]允许在离散的化学空间中进行连续优化,因此可用于设计具有目标特性的分子。为了解决LCAP方法中崎,、连续的属性曲面所带来的进一步挑战,我们开发了梯度定向蒙特卡洛(GDMC)策略,作为对原始LCAP优化方法的增强。 GDMC方法通过利用从LCAP方法计算出的局部梯度信息在离散的分子结构之间跳转来保留探索分子空间的能力。它还允许随机MC移动来克服属性曲面上局部最优之间的障碍。此处展示了组合的GDMC-LCAP方法可优化一类供体-受体取代的苯和卟啉骨架中的非线性光学性质。具体地,发现在卟啉环中具有四个氮原子的一个分子比具有常规卟啉基序的结构具有更大的第一超极化性。 (C)2008美国物理研究所。

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