4.6 Review

Progress and prospects of thick-film organic solar cells

Journal

JOURNAL OF MATERIALS CHEMISTRY A
Volume 9, Issue 6, Pages 3125-3150

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d0ta10594e

Keywords

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Funding

  1. National Natural Science Foundation of China [21822503, 51803040, 51973043]
  2. Youth Innovation Promotion Association
  3. Chinese Academy of Sciences

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With the continuous improvements in laboratory-scale organic solar cell performances, the development of efficient OSCs with thick active layers compatible for large-area printing processes is crucial for commercialization. Despite achieving high power conversion efficiencies using non-fullerene acceptors in thin-film OSCs, thick-film OSCs still lag behind due to increased charge recombination probability. Developing highly efficient photoactive materials for thick-film OSCs to exhibit optimal charge generation and transport morphology is essential for transitioning to industrial high-throughput manufacturing.
With the continuous improvements in the performances of laboratory-scale organic solar cells (OSCs), the development of efficient OSCs with thick active layers compatible with large-area printing processes is an inevitable requirement for commercialization in this field. Although high power conversion efficiencies (PCEs) of over 17% have been achieved using non-fullerene acceptors (NFAs) in thin-film OSCs, the performance of thick-film OSCs lag behind those of thin-film OSCs owing to the increased probability of charge recombination in thick film. To realize a transition from the laboratory-scale to industrial high-throughput manufacturing, the foremost aspect is to develop highly efficient photoactive materials that are capable of exhibiting attractive performances under a thick film with an optimal morphology for charge generation and transport. In this review, we summarize the developments of materials used for efficient thick-film OSCs over the last decades and present the remaining challenges for realizing the practical application of OSCs.

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