4.8 Review

Structural effects on optoelectronic properties of halide perovskites

Journal

CHEMICAL SOCIETY REVIEWS
Volume 47, Issue 18, Pages 7045-7077

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c8cs00212f

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Funding

  1. MAXNET Energy consortium of Max Planck Society
  2. Cluster of Excellence RESOLV - DFG, Fonds der Chemischen Industrie (FCI) [EXC 1069]
  3. Beijing Institute of Technology Research Fund Program for Young Scholars
  4. Max Planck Society

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Halide perovskites have prompted the evolution of the photovoltaic field and simultaneously demonstrated their great potential for application in other optoelectronic devices. A fundamental understanding of their structure-property relationship is essential to fabricate novel materials and high-performance devices. This review gives a perspective on different synthetic methodologies for the preparation of halide perovskites and highlights the effects of structural factors such as crystal structure, grain size, nanoscale dimensionality, patterned arrangement, and hierarchical structure on their optoelectronic properties. The main emphasis is given to 0D, 1D and 2D nanostructured materials including their common synthesis methods and key structural properties. Structural factors should be precisely controlled during the material preparation and device fabrication to improve the performance of targeted applications.

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