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April 26, 2026Advanced Functional Materials6 citations

Exceeding 20.2% Efficiency in Pseudo‐Planar Heterojunction Organic Solar Cells Enabled by High‐Crystallinity L8‐BO‐C 4 ‐Induced Morphology Optimization

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CZChao ZhangTHTengfei HanLWLijuan Wei

Key Points

  • This research aims to enhance the efficiency of organic solar cells through morphology optimization using a third component.
  • Incorporated the third component L8‐BO‐C4 into the D18/L8‐BO P-PHJ system.
  • Controlled branching position of alkyl chain on thiophene to achieve high crystallinity.
  • Employed layer-by-layer deposition to optimize molecular packing and network structure.
  • Increased power conversion efficiency from 19.06% to 20.24%.
  • High crystallinity of L8‐BO‐C4 improved orientation and guided recrystallization.
  • Effective promotion of charge carrier generation, transport, and collection.

Abstract

ABSTRACT Optimizing the morphology of the active layer via the incorporation of a sui` third component is crucial for enhancing the device performance of organic solar cells (OSCs). In this study, a third component L8‐BO‐C 4 is introduced into the D18/L8‐BO pseudo‐planar heterojunction (P‐PHJ) system to prepare P‐PHJ OSCs. L8‐BO‐C 4 and L8‐BO share akin chemical structures, but L8‐BO‐C 4 exhibits significantly higher crystallinity compared to L8‐BO, which is achieved through precise control of the branching position of the alkyl chain on the thiophene unit. The high crystallinity of L8‐BO‐C 4 enables it to act as a crystallization inducer during layer‐by‐layer deposition. It not only induces long‐range ordered orientation in the acceptor molecules but also guides the re‐nucleation and recrystallization of the donor layer through interfacial permeation. The optimized molecular packing and continuous interpenetrating network structure effectively promote the generation, transport, and collection of charge carriers. The power conversion efficiency of the P‐PHJ OSCs based on D18/L8‐BO as the main system is increased from 19.06% to 20.24%. This study demonstrates that the judicious introduction of a functional third component is an efficient strategy for further boosting the performance of P‐PHJ OSCs.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69edabb84a46254e215b3a5ahttps://doi.org/10.1002/adfm.75600
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