Transparent Recombination Layers Design and Rational Characterizations for Efficient Two-Terminal Perovskite-Based Tandem Solar Cells.

Adv Mater

MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, School of Physics, National Innovation Platform (Center) for Industry-Education Integration of Energy Storage Technology, Xi'an Jiaotong University, Xi'an, 710049, P. R. China.

Published: August 2024

AI Article Synopsis

  • Two-terminal (2T) perovskite-based tandem solar cells (TSCs) aim to exceed the efficiency limits of single-junction solar cells by using subcells with varying bandgaps, but their current highest efficiency of 33.9% is still below the theoretical maximum of 42-43%.
  • A major challenge for enhancing the effectiveness of these TSCs is the design of transparent recombination layers (RLs) that must manage optical losses, contact resistance, and other performance criteria between the subcells.
  • The review discusses the role and requirements of RLs, highlights characterization methods for research, and identifies key factors hindering RL performance improvements along with potential future research directions.

Article Abstract

Two-terminal (2T) perovskite-based tandem solar cells (TSCs) arouse burgeoning interest in breaking the Shockley-Queisser (S-Q) limit of single-junction solar cells by combining two subcells with different bandgaps. However, the highest certified efficiency of 2T perovskite-based TSCs (33.9%) lags behind the theoretical limit (42-43%). A vital challenge limiting the development of 2T perovskite-based TSCs is the transparent recombination layers/interconnecting layers (RLs) design between two subcells. To improve the performance of 2T perovskite-based TSCs, RLs simultaneously fulfill the optical loss, contact resistance, carrier mobility, stress management, and conformal coverage requirements. In this review, the definition, functions, and requirements of RLs in 2T perovskite-based TSCs are presented. The insightful characterization methods applicable to RLs, which are inspiring for further research on the RLs both in 2T perovskite-based two-junction and multi-junction TSCs, are also highlighted. Finally, the key factors that currently limit the performance enhancement of RLs and the future directions that should be continuously focused on are summarized.

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Source
http://dx.doi.org/10.1002/adma.202405684DOI Listing

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