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Noncovalently fused-ring electron acceptors with near-infrared absorption for high-performance organic solar cells

机译:具有近红外吸收特性的非共价稠环电子受体用于高性能有机太阳能电池

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摘要

Non-fullerene fused-ring electron acceptors boost the power conversion efficiency of organic solar cells, but they suffer from high synthetic cost and low yield. Here, we show a series of low-cost noncovalently fused-ring electron acceptors, which consist of a ladder-like core locked by noncovalent sulfur–oxygen interactions and flanked by two dicyanoindanone electron-withdrawing groups. Compared with that of similar but unfused acceptor, the presence of ladder-like structure markedly broadens the absorption to the near-infrared region. In addition, the use of intramolecular noncovalent interactions avoids the tedious synthesis of covalently fused-ring structures and markedly lowers the synthetic cost. The optimized solar cells displayed an outstanding efficiency of 13.24%. More importantly, solar cells based on these acceptors demonstrate very low non-radiative energy losses. This research demonstrates that low-cost noncovalently fused-ring electron acceptors are promising to achieve high-efficiency organic solar cells.
机译:非富勒烯稠环电子受体提高了有机太阳能电池的功率转换效率,但它们具有合成成本高和产率低的缺点。在这里,我们展示了一系列低成本的非共价稠合环电子受体,它们由被非共价硫-氧相互作用锁定并带有两个二氰基茚满酮吸电子基团的梯形核组成。与类似但未融合的受体相比,阶梯状结构的存在显着扩大了对近红外区域的吸收。另外,分子内非共价相互作用的使用避免了共价稠合环结构的繁琐合成并且显着降低了合成成本。优化的太阳能电池显示出13.24%的出色效率。更重要的是,基于这些受体的太阳能电池表现出非常低的非辐射能量损失。这项研究表明,低成本的非共价稠环电子受体有望实现高效率的有机太阳能电池。

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