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One-step synthesis of epitaxial 3D/2D metal halide perovskite heterostructures.

Zhaohua ZhuShaoyu ZengQian ChenLei YangCong WeiBo ChenHai-Dong YuHai LiJian ZhangXiao Huang
Published in: Chemical communications (Cambridge, England) (2022)
Facile and scalable synthesis of perovskite heterostructures with well-controlled heterointerfaces remains challenging. Herein, we developed a simple one-step solution method to prepare 3D/2D CsPbBr 3 /PEA 2 PbBr 4 perovskite heterostructures with a well-defined epitaxial structure in the gram scale. The formation mechanism was detailed by using in situ time-resolved photoluminescence (PL) spectroscopy analysis. In addition, a series of 3D/2D epitaxial heterostructures were also prepared by changing the organic cations or halogen anions. Due to the effective charge separation and transfer, photodetectors based on the type-II 3D/2D CsPbBr 3 /PEA 2 PbBr 4 heterostructures showed up to 120 times higher photoresponsivities and 50 times higher on/off ratios compared to devices based on single component perovskites.
Keyphrases
  • room temperature
  • ionic liquid
  • solar cells
  • quantum dots
  • high efficiency
  • high resolution
  • gram negative
  • single molecule
  • mass spectrometry
  • metal organic framework
  • data analysis