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一种基于 squaraine 连接的金属卟啉二维聚合物光催化剂,用于氢气和氧气的产生反应。

A squaraine-linked metalloporphyrin two-dimensional polymer photocatalyst for hydrogen and oxygen evolution reactions.

机构信息

Organic Chemistry Division, National Chemical Laboratory (CSIR-NCL), Pune-411008, India.

出版信息

Chem Commun (Camb). 2019 Jan 31;55(11):1627-1630. doi: 10.1039/c8cc09132c.

Abstract

Efficient water splitting photocatalysts are an energetically demanding and cost-effective method for generating renewable energy. Significant research has been reported to advance this approach. However, the use of organic photocatalysts and the presence of residual catalysts trapped in the porous frameworks present major concerns about the efficiency of this strategy. Herein, we report the photocatalytic evolution of H2 and O2 by a multi-hydroxyl group-decorated metalloporphyrin-based two-dimensional catalyst developed via metal catalyst-free synthetic route. Though metalloporphyrins have long been used for catalytic functions, a heterogeneous photocatalyst delivering both H2 and O2 has not yet been realized. This polymer catalyst design enables the photocatalytic diatomic O2 release, a bottleneck in water splitting, in a facile way. Photocatalytic release of H2 as well as O2 occurs with long-term durability of 20 cycles in 300 days with negligible decrease in efficiency, thus demonstrating the excellent performance of this new catalyst.

摘要

高效的水分解光催化剂是一种能量需求高且具有成本效益的可再生能源产生方法。已经有大量的研究报道来推进这一方法。然而,有机光催化剂的使用以及多孔框架中残留的催化剂的存在对该策略的效率提出了重大关注。在这里,我们报告了通过无金属催化剂合成途径开发的多羟基基团修饰的金属卟啉基二维催化剂的 H2 和 O2 的光催化演变。尽管金属卟啉长期以来一直用于催化功能,但尚未实现同时提供 H2 和 O2 的多相光催化剂。这种聚合物催化剂设计以简单的方式实现了光催化二原子 O2 的释放,这是水分解的一个瓶颈。在 300 天内进行了 20 个循环的长期耐久性测试,H2 和 O2 的光催化释放以及效率的微小下降均表明了这种新催化剂的优异性能。

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