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基于超分子水凝胶的自支撑氮化碳薄膜实现高效水净化

Efficient Water Cleaning by Self-standing Carbon Nitride Films Derived from Supramolecular Hydrogels.

作者信息

Li Junyi, Dor Snir, Barrio Jesús, Shalom Menny

机构信息

Department of Chemistry and Ilse Katz Institute for Nanoscale Science and Technology, Ben-Gurion University of the Negev, Beer-Sheva, 8410501, Israel.

Department of Materials Engineering, Israel Ministry of Defense, Hakirya, Tel Aviv, 61909, Israel.

出版信息

Chemistry. 2022 Oct 18;28(58):e202201969. doi: 10.1002/chem.202201969. Epub 2022 Aug 22.

Abstract

The design of efficient self-standing hybrid systems for water purification that combines good adsorption properties with high photodegradation ability is highly challenging owing to the difficulty in simultaneously controlling the band structure and porosity of a semiconductor while maintaining its self-standing nature. Here, we report the synthesis of carbon-rich carbon nitride self-standing filters from supramolecular hydrogels composed of melamine and cyanobenzoic acid. The influence of the chemical structure on the properties of the hydrogels and the final films was studied by tuning parameters such as monomer nature, molar ratio, and pyrolysis temperature. Thanks to their ability to combine the adsorption and photodegradation of organic pollutants, the prepared self-standing films showed remarkable activity and stability in flow conditions (>95 % efficiency after 10 consecutive cycles). Additionally, the photocatalytic activity of the films was assessed in the powder form for the hydrogen evolution reaction and photocurrent generation in a photoelectrochemical cell. The reported work opens opportunities for the controlled synthesis of multifunctional filters for water purification and other energy-related and sustainable technologies.

摘要

设计出高效的用于水净化的自支撑混合系统,使其兼具良好的吸附性能和高光降解能力,这极具挑战性,因为要在保持其自支撑性质的同时,难以同时控制半导体的能带结构和孔隙率。在此,我们报道了由三聚氰胺和氰基苯甲酸组成的超分子水凝胶合成富碳氮化碳自支撑滤膜。通过调整单体性质、摩尔比和热解温度等参数,研究了化学结构对水凝胶及最终薄膜性能的影响。由于所制备的自支撑薄膜能够结合有机污染物的吸附和光降解,因此在流动条件下表现出显著的活性和稳定性(连续10个循环后效率>95%)。此外,还以粉末形式评估了薄膜在光催化析氢反应和光电化学电池中光电流产生方面的光催化活性。所报道的工作为可控合成用于水净化以及其他与能源相关的可持续技术的多功能滤膜开辟了机会。

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