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用于各种实际水体中高效光催化产氢的氰基调节有机聚合物

Cyano-Regulated Organic Polymers for Highly Efficient Photocatalytic H O Production in Various Actual Water Bodies.

作者信息

Chu Chengcheng, Yao Ducheng, Chen Zhong, Liu Xinru, Huang Qisu, Li Qiuju, Mao Shun

机构信息

College of Environmental Science and Engineering, Biomedical Multidisciplinary Innovation Research Institute, Shanghai East Hospital, State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, 1239 Siping Road, Shanghai, 200092, China.

出版信息

Small. 2023 Nov;19(46):e2303796. doi: 10.1002/smll.202303796. Epub 2023 Jul 13.

Abstract

Photocatalytic production of H O has drawn significant attention in recent years, but the yield rate of current photocatalytic systems is still unsatisfactory. Moreover, the presence of various components in actual water bodies will consume the photogenerated charges and deactivate the catalyst, severely limiting the real applications of photocatalytic H O production. Herein, a cyano-modified polymer photocatalyst is synthesized by Knoevenagel condensation with subsequent thermal polymerization. The introduction of cyano group and sulfer (S), oxygen (O) elements modulates the microstructure and energy band of the polymer catalyst, and the cyano group sites can effectively adsorb and activate O , realizing the generation of H O in the two-step single-electron oxygen reduction process. The reported system achieves high H O generation rate up to 1119.2 µmol g h in various water bodies including tap water, river water, seawater, and secondary effluent. This simple and readily available catalyst demonstrates good anti-interference performance and pH adaptability in photocatalytic H O production in actual water bodies, and its photodegradation and sterilization applications are also demonstrated. This study offers new insights in developing polymer catalysts for efficient photocatalytic production of H O in various water bodies for practical application.

摘要

近年来,光催化产过氧化氢受到了广泛关注,但目前光催化体系的产率仍不尽人意。此外,实际水体中各种成分的存在会消耗光生电荷并使催化剂失活,严重限制了光催化产过氧化氢的实际应用。在此,通过克诺文纳格尔缩合反应并随后进行热聚合反应合成了一种氰基改性的聚合物光催化剂。氰基和硫(S)、氧(O)元素的引入调节了聚合物催化剂的微观结构和能带,氰基位点可以有效吸附和活化氧气,在两步单电子氧还原过程中实现了过氧化氢的生成。所报道的体系在包括自来水、河水、海水和二级出水在内的各种水体中实现了高达1119.2 μmol g⁻¹ h⁻¹ 的高过氧化氢生成速率。这种简单且易于获得的催化剂在实际水体光催化产过氧化氢过程中表现出良好的抗干扰性能和pH适应性,并且还展示了其光降解和杀菌应用。该研究为开发用于各种水体中高效光催化产过氧化氢以实现实际应用的聚合物催化剂提供了新的见解。

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