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Electrostatic Modulation of Central Units Enables High‐Performance Fused‐Ring Trimeric Acceptors
One-line summary
A solar energy research paper on Electrostatic Modulation of Central Units Enables High‐Performance Fused‐Ring Trimeric Acceptors.
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Chinese explanation / 中文解读
中文解读待补充:本站会优先为光伏效率、钙钛矿太阳能电池、储能技术、太阳能热利用、BIPV、并网技术等高价值论文补充中文说明。
Original abstract
Fused-ring trimeric acceptor benefits from both the high symmetry/planarity of small-molecule acceptors and the large glass transition temperature of polymeric acceptors, making it highly potential to achieve organic solar cells (OSCs) with excellent power conversion efficiencies (PCEs) and long-term stabilities simultaneously. However, due to the structural complexity of ring-fused trimeric acceptor, conveniently tuning its optoelectronic properties remains a significant challenge. Herein, the first family of optically and electrostatically tunable fused-ring trimeric acceptors (CH34, CH35, and CH36) is constructed by incorporating electron-donating triazatruxene, electron-neutral triphenylene and electron-withdrawing tricycloquinazoline as central planes, respectively. All the trimeric acceptors maintain the intrinsic rigidity and planarity of molecular skeleton, which endow them with very small reorganization energies and weak electron-phonon coupling. Moreover, the quite different electrostatic properties of central cores exert significant effects on the energy levels distribution and light harvesting capacity of acceptors. Consequently, CH36 achieves a good PCE of 16.73%, representing the best performance among ring-fused trimeric acceptors. Remarkably, CH36-based ternary OSCs further render an excellent PCE of 20.48% along with substantially improved operational stability. Our work demonstrates the great potential of fused-ring trimeric acceptor for realizing both highly efficient and stable organic photovoltaics.
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