首页> 外文期刊>Journal of chemical theory and computation: JCTC >AUTOMATON: A Program That Combines a Probabilistic Cellular Automata and a Genetic Algorithm for Global Minimum Search of Clusters and Molecules
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AUTOMATON: A Program That Combines a Probabilistic Cellular Automata and a Genetic Algorithm for Global Minimum Search of Clusters and Molecules

机译:自动机:将概率蜂窝自动机和遗传算法结合到全球最小搜索簇和分子的程序

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摘要

A novel program for the search of global minimum structures of atomic clusters and molecules in the gas phase, AUTOMATON, is introduced in this work. This program involves the following: first, the generation of an initial population, using a simplified probabilistic cellular automaton method, which allows easy control of the adequate distribution of atoms in space; second, the fittest individuals are selected to evolve, through genetic operations (mating and mutations), until the best candidate for a global minimum surfaces. In addition, we propose a simple way to build the descendant structures by establishing a ranking of genes to be inherited. Thus, by means of a chemical formula checker procedure, genes are transferred to the offspring, ensuring that they always have the appropriate type and number of atoms. It is worth noting that a fraction of the fittest group is subject to mutation operations. This program also includes algorithms to identify duplicate structures: one based on geometric similarity and another on the similar distribution of atomic charges. The effectiveness of the program was evaluated in a group of 45 molecules, considering organic and organometallic compounds (benzene, cyclopentadienyl anion, and ferrocene), Zintl ion clusters [Sn9-m-nGemBin]((4-n)-) (n = 1-4 and m = 0-(9-n)), star-shaped clusters (Li7E5+, E = BH, C, Si, Ge) and a variety of boron-based clusters. The global minimum and the lowest-energy isomers reported in the literature were found for all the cases considered in this article. These results successfully prove AUTOMATON's effectiveness on the identification of energetically preferred structures of a wide variety of chemical species.
机译:在这项工作中介绍了一种用于搜索气相中的全球原子簇和分子的全局最小结构的新计划。该程序涉及以下内容:首先,使用简化的概率蜂窝自动机方法来产生初始群体,这允许易于控制空间中原子的足够分布;其次,选择最适合的个体以通过遗传操作(交配和突变)来演变,直到全球最小表面的最佳候选者。此外,我们提出了一种简单的方法来通过建立待遗传的基因排名来构建后代结构。因此,通过化学式检查器程序,基因被转移到后代,确保它们总是具有适当的类型和原子数。值得注意的是,最适合组的一部分受到突变操作的影响。该程序还包括算法以识别重复结构:一个基于几何相似性,另一个在原子电荷的类似分布上。考虑有机和有机金属化合物(苯,环戊二烯基阴离子和二茂铁),Zintl离子簇[SN9-M-Ngembin]((4-N) - )((4-N) - )((4-N) - )(n = 1-4和m = 0-(9-n)),星形簇(Li7e5 +,E = BH,C,Si,Ge)和各种基于硼的簇。在本文中考虑的所有案例中发现了文献中报告的全球最低和最低能量异构体。这些结果成功证明了Automaton对鉴定各种化学物质的能量优选的结构的有效性。

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    Univ Andres Bello Fac Ciencias Exactas Fis Quim Mol Republ 275 2do Piso Santiago 8370146 Chile;

    Univ Andres Bello Fac Ciencias Exactas Fis Quim Mol Republ 275 2do Piso Santiago 8370146 Chile;

    Univ Andres Bello Fac Ciencias Exactas Dept Ciencias Quim Computac &

    Theoret Chem Grp Republ 275 2er Piso Santiago 8370146 Chile;

    Univ Andres Bello Fac Ciencias Exactas Dept Ciencias Quim Computac &

    Theoret Chem Grp Republ 275 2er Piso Santiago 8370146 Chile;

    Univ Santiago Chile USACH Fac Quim &

    Biol Lab Quim Teor Ave Bernardo OHiggins 3363 Santiago 9170022 Chile;

    Univ Autonoma Metropolitana Iztapalapa Div Ciencias Basicas &

    Ingn Dept Quim San Rafael Atlixco 186 Mexico City 09340 DF Mexico;

    Univ Andres Bello Fac Ciencias Exactas Dept Ciencias Quim Computac &

    Theoret Chem Grp Republ 275 2er Piso Santiago 8370146 Chile;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学键的量子力学理论;化学;
  • 关键词

  • 入库时间 2022-08-20 08:56:01

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