Sprick Reiner Sebastian, Chen Zheng, Cowan Alexander J, Bai Yang, Aitchison Catherine M, Fang Yuanxing, Zwijnenburg Martijn A, Cooper Andrew I, Wang Xinchen
Department of Chemistry and Materials Innovation Factory, University of Liverpool, Liverpool, L7 3NY, UK.
Department of Pure and Applied Chemistry, University of Strathclyde, Thomas Graham Building, 295 Cathedral Street, Glasgow, G1 1XL, UK.
Angew Chem Int Ed Engl. 2020 Oct 12;59(42):18695-18700. doi: 10.1002/anie.202008000. Epub 2020 Aug 19.
The first examples of linear conjugated organic polymer photocatalysts that produce oxygen from water after loading with cobalt and in the presence of an electron scavenger are reported. The oxygen evolution rates, which are higher than for related organic materials, can be rationalized by a combination of the thermodynamic driving force for water oxidation, the light absorption of the polymer, and the aqueous dispersibility of the relatively hydrophilic polymer particles. We also used transient absorption spectroscopy to study the best performing system and we found that fast oxidative quenching of the exciton occurs (picoseconds) in the presence of an electron scavenger, minimizing recombination.
报道了首例线性共轭有机聚合物光催化剂,其在负载钴后并在电子清除剂存在的情况下可从水中产生氧气。析氧速率高于相关有机材料,这可通过水氧化的热力学驱动力、聚合物的光吸收以及相对亲水的聚合物颗粒在水中的分散性共同作用来解释。我们还使用瞬态吸收光谱法研究了性能最佳的体系,发现在电子清除剂存在的情况下激子会发生快速氧化猝灭(皮秒级),从而使复合减到最小。