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Research progress of ABX3-type lead-free perovskites for optoelectronic applications: materials and devices

期刊

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
卷 24, 期 45, 页码 27585-27605

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2cp02451a

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资金

  1. National Natural Science Foundation of China
  2. State Key Laboratory of Advanced Optical Communication Systems Networks of China
  3. Beijing Key Laboratory for Sensors of BISTU
  4. Key Training Program of the Research Level Improvement Plan of Beijing Information Science and Technology University
  5. [61901009]
  6. [61875186]
  7. [2021GZKF002]
  8. [2019CGKF007]
  9. [2020KYNH222]

向作者/读者索取更多资源

This article summarizes the development and application of lead-free halide perovskite materials, including their crystal structure, energy band structure, and optoelectronic properties. These materials have great potential for applications in solar cells and light-emitting devices, but their stability and photoelectric conversion efficiency still face challenges.
In recent years, lead halide perovskite materials have attracted great interest and are widely used in solar cells and light-emitting devices due to their high photoelectronic quantum yield, high color purity, high defect tolerance, long diffusion length, high carrier mobility, and bandgap tunability. However, the application of lead halide perovskites is limited due to the presence of Pb, making lead-free perovskites an important substitute due to their same crystal structure and similar properties. Although some reports have been made on lead-free perovskite materials, there are still great challenges to realize their application due to their poor stability, easy phase transition, and low photoelectric conversion efficiency. Here, we mainly summarize the development and application of ABX(3)-type lead-free halide perovskite materials, especially in optoelectronic devices. The article first introduces the lattice and energy band structure, the optoelectronic properties of lead-free perovskites, including the research method of lead-free perovskites, and then analyzes the reasons for the low luminous efficiency and poor stability of lead-free perovskite materials. Second, the development history and current situation of lead-free perovskites in different optoelectronic device applications are summarized. Finally, we present the challenges and prospects for the future development of lead-free perovskites.

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