Materials Cartography: Representing and Mining Materials Space Using Structural and Electronic Fingerprints

被引:212
作者
Isayev, Olexandr [1 ]
Fourches, Denis [1 ]
Muratov, Eugene N. [1 ]
Oses, Corey [2 ]
Rasch, Kevin [2 ]
Tropsha, Alexander [1 ]
Curtarolo, Stefano [2 ,3 ]
机构
[1] Univ N Carolina, UNC Eshelman Sch Pharm, Div Chem Biol & Med Chem, Lab Mol Modeling, Chapel Hill, NC 27599 USA
[2] Duke Univ, Ctr Mat Genom, Durham, NC 27708 USA
[3] Duke Univ, Durham, NC 27708 USA
基金
美国国家科学基金会;
关键词
HIGH-TC SUPERCONDUCTIVITY; ORGANIC PHOTOVOLTAICS; TOPOLOGICAL INSULATORS; DIRAC CONE; DESIGN; COMBINATORIAL; AFLOWLIB.ORG; INFORMATICS; CHEMISTRY; DISCOVERY;
D O I
10.1021/cm503507h
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
As the proliferation of high-throughput approaches in materials science is increasing the wealth of data in the field, the gap between accumulated-information and derived-knowledge widens. We address the issue of scientific discovery in materials databases by introducing novel analytical approaches based on structural and electronic materials fingerprints. The framework is employed to (i) query large databases of materials using similarity concepts, (ii) map the connectivity of materials space (i.e., as a materials cartograms) for rapidly identifying regions with unique organizations/properties, and (iii) develop predictive Quantitative Materials StructureProperty Relationship models for guiding materials design. In this study, we test these fingerprints by seeking target material properties. As a quantitative example, we model the critical temperatures of known superconductors. Our novel materials fingerprinting and materials cartography approaches contribute to the emerging field of materials informatics by enabling effective computational tools to analyze, visualize, model, and design new materials.
引用
收藏
页码:735 / 743
页数:9
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