Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60628-3113, USA.
University of Colorado, Boulder, Colorado 80309, USA.
Nat Chem. 2015 Apr;7(4):308-16. doi: 10.1038/nchem.2207.
Chemists and material scientists have often focused on the properties of previously reported compounds, but neglect numerous unreported but chemically plausible compounds that could have interesting properties. For example, the 18-valence electron ABX family of compounds features examples of topological insulators, thermoelectrics and piezoelectrics, but only 83 out of 483 of these possible compounds have been made. Using first-principles thermodynamics we examined the theoretical stability of the 400 unreported members and predict that 54 should be stable. Of those previously unreported 'missing' materials now predicted to be stable, 15 were grown in this study; X-ray studies agreed with the predicted crystal structure in all 15 cases. Among the predicted and characterized properties of the missing compounds are potential transparent conductors, thermoelectric materials and topological semimetals. This integrated process-prediction of functionality in unreported compounds followed by laboratory synthesis and characterization-could be a route to the systematic discovery of hitherto missing, realizable functional materials.
化学家与材料科学家通常专注于已报道化合物的性质,但却忽略了大量未经报道但在化学上合理的化合物,而这些化合物可能具有有趣的性质。例如,具有拓扑绝缘体、热电材料和压电材料特性的 18 价电子 ABX 族化合物,但在这 483 种可能的化合物中,仅有 83 种被合成出来。我们利用第一性原理热力学研究了这 400 种未经报道成员的理论稳定性,并预测其中 54 种应该是稳定的。在这些之前未被报道但现在预测为稳定的“缺失”材料中,有 15 种在本研究中被成功合成;在所有 15 种情况下,X 射线研究都与预测的晶体结构一致。在这些缺失化合物的预测和特征性质中,包括潜在的透明导体、热电材料和拓扑半金属。这种对未经报道化合物的功能进行预测-合成-特性研究的综合方法可能是系统发现迄今缺失的、可实现的功能材料的途径。