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首页> 外文期刊>Angewandte Chemie >Reducing the Exciton Binding Energy of Donor-Acceptor-Based Conjugated Polymers to Promote Charge-Induced Reactions
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Reducing the Exciton Binding Energy of Donor-Acceptor-Based Conjugated Polymers to Promote Charge-Induced Reactions

机译:减少供体受体基缀合聚合物的激子结合能量,以促进电荷诱导的反应

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Exciton binding energy has been regarded as a crucial parameter for mediating charge separation in polymeric photocatalysts. Minimizing the exciton binding energy of the polymers can increase the yield of charge-carrier generation and thus improve the photocatalytic activities, but the realization of this approach remains a great challenge. Herein, a series of linear donor-acceptor conjugated polymers has been developed to minimize the exciton binding energy by modulating the charge-transfer pathway. The results reveal that the reduced energy loss of the charge-transfer state can facilitate the electron transfer from donor to acceptor, and thus, more electrons are ready for subsequent reduction reactions. The optimized polymer, FSO-FS, exhibits a remarkable photochemical performance under visible light irradiation.
机译:Exciton结合能被认为是用于在聚合物光催化剂中介导电荷分离的关键参数。 最小化聚合物的激子结合能量可以增加电荷载流子产生的产率,从而改善光催化活性,但这种方法的实现仍然是一个巨大的挑战。 这里,已经开发了一系列线性供体核酸缀合聚合物以通过调节电荷转移途径来最小化激子结合能。 结果表明,电荷转移状态的能量损失降低可以促进从供体的电子转移到受体,因此,更多的电子已准备好用于后续还原反应。 优化的聚合物FSO-FS,在可见光照射下表现出显着的光化学性能。

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