引用本文:
陈莹, 边秀房, 孙民华, 王丽. 铝原子Bernal多面体团簇的理论研究[J]. 物理化学学报,
2003, 19(03): 242-245.
doi:
10.3866/PKU.WHXB20030312
Citation: Chen Ying, Bian Xiu-Fang, Sun Min-Hua, Wang Li. Theoretical Study of Bernal Polyhedron of Aluminum Atomic Clusters[J]. Acta Physico-Chimica Sinica, 2003, 19(03): 242-245. doi: 10.3866/PKU.WHXB20030312

Citation: Chen Ying, Bian Xiu-Fang, Sun Min-Hua, Wang Li. Theoretical Study of Bernal Polyhedron of Aluminum Atomic Clusters[J]. Acta Physico-Chimica Sinica, 2003, 19(03): 242-245. doi: 10.3866/PKU.WHXB20030312

铝原子Bernal多面体团簇的理论研究
摘要:
将遗传算法用于铝原子团簇的构型计算.运用这种方法,从任意构型开始,较好地计算了6、8、9、10个铝原子组成的原子团簇的能量最低时的构型,发现这四种铝原子团簇的能量最低构型分别取四种Bernal多面体排列.并对得到的四种构型用密度泛函方法(DFT)进行量子化学计算,结果表明,这类构型是势能面上的极小值点,可以稳定存在.
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关键词:
- 原子团簇;遗传算法;紧束缚势;几何构型
English
Theoretical Study of Bernal Polyhedron of Aluminum Atomic Clusters
Abstract:
A method based on a genetic al rithm was used to determine the lowest energy structure of an atomic cluster in an arbitrary model potential. The method operated on a population of candidate structures to produce new candidates with lower energies, and finally the lowest energy structure can be obtained. We applied the genetic al rithm to a tight-binding (TB) model potential for aluminum clusters. With this potential, the al rithm efficiently found the lowest energy structures of Al6, Al8, Al9, Al10 clusters starting from a random atomic collection of atoms. The lowest energy structures of Al6, Al8, Al9, Al10 were found to adopt four forms of Bernal polyhedron. The density function theory (DFT) calculation was also done and the result shows that the four geometries are the minimums on the potential surface.

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