Song Chongfu, Tian Zhimei
School of Chemistry and Materials Engineering, Fuyang Normal University, Fuyang, 236037, Anhui, China.
J Mol Model. 2019 Sep 10;25(10):310. doi: 10.1007/s00894-019-4191-4.
Silver sulfide is a famous semiconductor, which can be used in many areas. Understanding the size evolution of silver sulfide clusters is useful in controlling their size to improve their properties in applications. The structures of (AgS) (n = 1-8) clusters are explored using a combined method of genetic algorithm (GA) and density functional theory (DFT). The TPSSh/def2-tzvp(Ag)/6-311G(d)(S) method has been used to optimize the structures. The re-optimized structures and refined energies are computed at PBE0/Lanl2tz(Ag)/6-311G(d,p)(S) level according to the benchmark calculations. The global minimum (GM) structures, HOMO and LUMO frontier orbitals, density of states, ionization potentials, electron affinity energies, noncovalent interactions, and natural populations of the clusters have been studied. The clusters evolve from open to cage structures when n varies from 1 to 8. A triangular AgS unit is found to be an important building block, which can construct the global minimum structures of (AgS) (n = 3-8) clusters. When n > 6, quadrangular AgS rings present in (AgS) clusters. (AgS) and (AgS) clusters are in hollow conformation, and both of which have special stability because of their high HOMO-LUMO gaps, high ionization potentials, and Ag⋯Ag attractive interactions in them. Graphical abstract.
硫化银是一种著名的半导体,可用于许多领域。了解硫化银团簇的尺寸演化对于控制其尺寸以改善其在应用中的性能很有用。使用遗传算法(GA)和密度泛函理论(DFT)的组合方法探索了(AgS)(n = 1 - 8)团簇的结构。采用TPSSh/def2 - tzvp(Ag)/6 - 311G(d)(S)方法对结构进行了优化。根据基准计算,在PBE0/Lanl2tz(Ag)/6 - 311G(d,p)(S)水平上计算了重新优化的结构和精确的能量。研究了团簇的全局最小(GM)结构、HOMO和LUMO前沿轨道、态密度、电离势、电子亲和能、非共价相互作用以及自然布居。当n从1变化到8时,团簇从开放结构演变为笼状结构。发现三角形AgS单元是一个重要的构建块,它可以构建(AgS)(n = 3 - 8)团簇的全局最小结构。当n > 6时,(AgS)团簇中存在四边形AgS环。(AgS)和(AgS)团簇呈中空构象,由于它们具有较高的HOMO - LUMO能隙、较高的电离势以及其中的Ag⋯Ag吸引相互作用,两者都具有特殊的稳定性。图形摘要。