Antipas Georgios S E
School of Mining Engineering and Metallurgy, National Technical University of Athens, Zografou Campus, Athens 15780, Greece.
Data Brief. 2015 Jun 16;4:257-65. doi: 10.1016/j.dib.2015.05.024. eCollection 2015 Sep.
The link between the electronic state and the mesoscale of covalent glasses is not settled. A functional means of addressing the mesoscale is via generalizing glass properties (e.g. such as cohesion) on the basis of atomic clusters. Derivation of the most representative such cluster formations is not streamlined, however. Here, numerical pair correlation and ab initio energetic datasets are presented for the case of amorphous Selenium-rich covalent glasses, which were obtained via a new, concise methodology, relating mesoscopic cohesion to local atomic order and to the system׳s electronic structure. The methodology consisted of selecting clusters on the basis of the variation of atomic environment statistics of total coordination, partial coordination by the matrix element and cluster number density along the radial direction of a Reverse Monte Carlo supercell, the latter attained by fitting total scattering data.
共价玻璃的电子态与中尺度之间的联系尚未确定。解决中尺度问题的一种有效方法是基于原子团簇来概括玻璃的性质(例如内聚性)。然而,推导最具代表性的此类团簇结构并非一帆风顺。本文给出了富含非晶态硒的共价玻璃的数值对关联和从头算能量数据集,这些数据集是通过一种新的简洁方法获得的,该方法将介观内聚性与局部原子有序性以及系统的电子结构联系起来。该方法包括根据总配位的原子环境统计量、基体元素的部分配位以及沿反向蒙特卡罗超晶胞径向的团簇数密度的变化来选择团簇,后者是通过拟合总散射数据得到的。