Structural, optical, and electrical properties of tin iodide-based vacancy-ordered-double perovskites synthesized via mechanochemical reaction

  • Cho, Hanbyeol; 
  • Yun, Yeonghun; 
  • Choi, Won Chang; 
  • Cho, In Sun; 
  • Lee, Sangwook
Citations

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7
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8

초록

Over the recent past, lead-based halide perovskite materials have drawn significant attention due to their excellent optical and electrical properties for solar cells and optoelectronics applications. However, the toxicity of lead elements and instability under ambient conditions leads to develop alternative compositions. Herein, we report a novel mechanochemical synthesis of tin iodide-based double perovskites (A(2)SnI(6); A = Rb+, Cs+, methylammonium, and formamidinium), and their structural, optical, and electrical properties are investigated. Importantly, we found that the hydrogen iodide (HI) addition during the ball-milling process minimizes secondary phase formation in the synthesized A(2)SnI(6) powders. The effects of HI addition and the A-site substitution are investigated with respect to the lattice parameters, optical bandgaps, and electrical properties of the synthesized perovskite materials. Our results demonstrate essential information to improve the understanding of halide perovskite materials and develop efficient lead-free perovskite photoelectric devices.

키워드

Lead-free perovskites; Mechanochemical synthesis; Crystal structure; Optical properties; Electrical properties; THIN-FILMS; HALIDE; PRINCIPLES; TOLERANCE; CS2SNI6; BR
제목
Structural, optical, and electrical properties of tin iodide-based vacancy-ordered-double perovskites synthesized via mechanochemical reaction
저자
Cho, Hanbyeol; Yun, Yeonghun; Choi, Won Chang; Cho, In Sun; Lee, Sangwook
DOI
10.1016/j.ceramint.2021.10.112
발행일
2022-02-01
유형
Article
저널명
Ceramics International
권
48
호
3
페이지
3368 ~ 3373