Dai Jun, Ma Liang, Ju Minggang, Huang Jinsong, Zeng Xiao Cheng
Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE 68588, USA.
Phys Chem Chem Phys. 2017 Aug 16;19(32):21691-21695. doi: 10.1039/c7cp03448b.
Double perovskites in the form of AB'B''X (A = Cs, B' = Ag, B'' = Bi) have been reported as potential alternatives to lead-containing organometal trihalide perovskites. However, all double perovskites synthesized to date exhibit indirect bandgaps >1.95 eV, which are undesirable for photovoltaic and optoelectronic applications. Herein, we report a comprehensive computer-aided screening of In- and Ga-based double perovskites for potential photovoltaic applications. To this end, several preconditions are implemented for the screening of optimal candidates, which include structural stability, electronic bandgaps, and optical absorption. Importantly, four In- and Ga-based double perovskites are identified to possess direct bandgaps within the desirable range of 0.9-1.6 eV for photovoltaic applications. Dominant optical absorption of the four double perovskites is found to be in the UV range. The structural and thermal stability of the four double perovskites are examined using both the empirical Goldschmidt ratio and convex-hull calculations. Only CsAgInBr is predicted to be thermodynamically stable.
AB'B''X(A = Cs,B' = Ag,B'' = Bi)形式的双钙钛矿已被报道为含铅有机金属三卤化物钙钛矿的潜在替代品。然而,迄今为止合成的所有双钙钛矿都表现出间接带隙大于1.95 eV,这对于光伏和光电子应用来说是不理想的。在此,我们报告了基于铟和镓的双钙钛矿在潜在光伏应用方面的全面计算机辅助筛选。为此,在筛选最佳候选物时实施了几个先决条件,包括结构稳定性、电子带隙和光吸收。重要的是,确定了四种基于铟和镓的双钙钛矿具有0.9 - 1.6 eV的理想范围内的直接带隙,适用于光伏应用。发现这四种双钙钛矿的主要光吸收在紫外范围内。使用经验性的戈尔德施密特比率和凸包计算来检验这四种双钙钛矿的结构和热稳定性。仅预测CsAgInBr在热力学上是稳定的。