Su Chuanxun, Lv Jian, Li Quan, Wang Hui, Zhang Lijun, Wang Yanchao, Ma Yanming
State Key Laboratory of Superhard Materials, Jilin University, Changchun 130012, People's Republic of China. Beijing Computational Science Research Center, Beijing 100084, People's Republic of China.
J Phys Condens Matter. 2017 Apr 26;29(16):165901. doi: 10.1088/1361-648X/aa63cd. Epub 2017 Mar 1.
Crystal structure prototype data have become a useful source of information for materials discovery in the fields of crystallography, chemistry, physics, and materials science. This work reports the development of a robust and efficient method for assessing the similarity of structures on the basis of their interatomic distances. Using this method, we proposed a simple and unambiguous definition of crystal structure prototype based on hierarchical clustering theory, and constructed the crystal structure prototype database (CSPD) by filtering the known crystallographic structures in a database. With similar method, a program structure prototype analysis package (SPAP) was developed to remove similar structures in CALYPSO prediction results and extract predicted low energy structures for a separate theoretical structure database. A series of statistics describing the distribution of crystal structure prototypes in the CSPD was compiled to provide an important insight for structure prediction and high-throughput calculations. Illustrative examples of the application of the proposed database are given, including the generation of initial structures for structure prediction and determination of the prototype structure in databases. These examples demonstrate the CSPD to be a generally applicable and useful tool for materials discovery.
晶体结构原型数据已成为晶体学、化学、物理和材料科学领域中材料发现的有用信息来源。这项工作报告了一种基于原子间距离评估结构相似性的强大而高效的方法的开发。使用这种方法,我们基于层次聚类理论提出了一个简单明确的晶体结构原型定义,并通过筛选数据库中已知的晶体结构构建了晶体结构原型数据库(CSPD)。采用类似方法,开发了一个程序结构原型分析包(SPAP),以去除CALYPSO预测结果中的相似结构,并为单独的理论结构数据库提取预测的低能量结构。编制了一系列描述CSPD中晶体结构原型分布的统计数据,为结构预测和高通量计算提供了重要见解。给出了所提出数据库应用的示例,包括用于结构预测的初始结构生成和数据库中原型结构的确定。这些示例表明CSPD是材料发现中普遍适用且有用的工具。