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高效光催化制氢:三嗪基共轭多孔聚合物中的连接单元工程。

Efficient photocatalytic hydrogen evolution: Linkage units engineering in triazine-based conjugated porous polymers.

机构信息

College of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng 252059, China.

College of Chemistry and Chemical Engineering, Taishan University, Taian 271000, China.

出版信息

J Colloid Interface Sci. 2023 May;637:41-54. doi: 10.1016/j.jcis.2023.01.066. Epub 2023 Jan 18.

Abstract

Conjugated porous polymers (CPPs) have been widely reported as promising photocatalysts. However, the realization of powerful photocatalytic hydrogen production performance still benefits from the rational design of molecular frameworks and the appropriate choice of building monomers. Herein, we synthesized two novel conjugated porous polymers (CPPs) by copolymerizing pyrene and 1,3,5-triazine building blocks. It is found that minor structural changes in the peripheral groups of the triazine units can greatly affect the photocatalytic activity of the polymers. Compared with the phenyl-linkage unit, the thiophene-linkage unit can give CPP a wider absorption range of visible light, a narrower band gap, a higher transmission and separation efficiency of photo-generated carriers (electrons/holes), and a better interface contact with the photocatalytic reaction solution. The catalyst containing thiophene-triazine (ThPy-CPP) has an efficient photocatalytic hydrogen evolution rate of 21.65 and 16.69 mmol gh under full-arc spectrum and visible light without the addition of a Pt co-catalyst, respectively, much better than the one containing phenyl-triazine (PhPy-CPP, only 5.73 and 3.48 mmol gh). This study provides a promising direction to design and construct highly efficient, cost-effective CPP-based photocatalysts, for exploring the application of noble metal-free catalysts in photocatalytic hydrogen evolution.

摘要

共轭多孔聚合物 (CPPs) 已被广泛报道为很有前途的光催化剂。然而,要实现强大的光催化制氢性能,仍然受益于分子框架的合理设计和构建单体的适当选择。在此,我们通过共聚芘和 1,3,5-三嗪砌块合成了两种新型共轭多孔聚合物 (CPPs)。研究发现,三嗪单元外围基团的微小结构变化会极大地影响聚合物的光催化活性。与苯环连接单元相比,噻吩连接单元可以使 CPP 具有更宽的可见光吸收范围、更窄的带隙、更高的光生载流子(电子/空穴)传输和分离效率,以及与光催化反应溶液更好的界面接触。含有噻吩-三嗪 (ThPy-CPP) 的催化剂在全弧光谱和可见光下分别具有 21.65 和 16.69 mmol g h 的高效光催化制氢速率,无需添加 Pt 共催化剂,明显优于含有苯-三嗪 (PhPy-CPP,仅为 5.73 和 3.48 mmol g h)。这项研究为设计和构建高效、经济的 CPP 基光催化剂提供了一个很有前景的方向,为探索无贵金属催化剂在光催化制氢中的应用提供了思路。

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