人工光合作用
共轭体系
光化学
化学
接受者
光诱导电荷分离
电子供体
电子转移
电子受体
激子
化学物理
材料科学
聚合物
光催化
有机化学
物理
催化作用
量子力学
凝聚态物理
作者
Honghui Ou,Xinru Chen,Lihua Lin,Yuanxing Fang,Xinchen Wang
标识
DOI:10.1002/anie.201803863
摘要
Abstract Natural photosynthesis serves as a model for energy and chemical conversions, and motivates the search of artificial systems that mimic nature′s energy‐ and electron‐transfer chains. However, bioinspired systems often suffer from the partial or even large loss of the charge separation state, and show moderate activity owing to the fundamentally different features of the multiple compounds. Herein, a selenium and cyanamide‐functionalized heptazine‐based melon (DA‐HM) is designed as a unique bioinspired donor–acceptor (D‐A) light harvester. The combination of the photosystem and electron shuttle in a single species, with both n‐ and p ‐type conductivities, and extended spectral absorption, endows DA‐HM with a high efficiency in the transfer and separation of photoexcited charge carriers, resulting in photochemical activity. This work presents a unique conjugated polymeric system that shows great potential for solar‐to‐chemical conversion by artificial photosynthesis.
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