材料科学
卤化物
光电子学
声子
带隙
格子(音乐)
吸收(声学)
电子能带结构
八面体
结构稳定性
光伏系统
凝聚态物理
吸收光谱法
直接和间接带隙
晶体结构
可见光谱
晶格常数
相(物质)
宽禁带半导体
理论(学习稳定性)
电子结构
纳米技术
异质结
航程(航空)
作者
Najat El Gaidi,Abdelghafour El Mekkaouy,L. Talha,M. Filali,Samir Chtita,Rodouan Touti
标识
DOI:10.1016/j.sciaf.2026.e03189
摘要
Lead-free halide double perovskites are promising alternatives to toxic Pb-based absorbers, yet the impact of alkali-metal substitution on lattice stability and optoelectronic response remains unclear. Here, first-principles calculations are employed to investigate the structural, lattice-dynamical, electronic, optical, and photovoltaic properties of cubic X 2 SbAgBr 6 (X = Li, Na, K). All compounds satisfy the Born mechanical stability criteria, whereas phonon dispersions reveal that only Li 2 SbAgBr 6 is dynamically stable at 0 K, while Na 2 SbAgBr 6 and K 2 SbAgBr 6 exhibit soft modes associated with octahedral tilting. Indirect band gaps in the range 0.75–0.81 eV and strong near-infrared absorption are obtained, with visible absorption arising from higher-energy interband transitions. These results identify Li 2 SbAgBr 6 as the most robust cubic phase and demonstrate that A-site cation engineering provides an effective route to tune lattice stability and optoelectronic properties in lead-free double perovskites.
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