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一步原位合成基于还原氧化石墨烯的杂化水凝胶用于高效水蒸发及综合废水处理

One-Step In Situ Synthesis of a Reduced Graphene Oxide-Based Hybrid Hydrogel for Highly Efficient Water Evaporation and Comprehensive Wastewater Treatment.

作者信息

Yang Haining, Li Wei, Yang Haimin, Xiong Ya, Liu Chengbao, Han Yongqin, Yu Zhong-Zhen, Li Xiaofeng

机构信息

Shandong Key Laboratory of Special Epoxy Resin, School of Materials Science and Engineering, Shandong University of Science and Technology, Qingdao 266590, China.

State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

ACS Appl Mater Interfaces. 2025 Jul 31. doi: 10.1021/acsami.5c10872.

DOI:10.1021/acsami.5c10872
PMID:40743500
Abstract

Solar-driven wastewater treatment via integrated photothermal evaporation and photocatalysis has emerged as a promising approach for freshwater generation, but it is still a challenge in reconciling the fundamental conflict between charge carrier dynamics, where photothermal conversion inherently promotes electron-hole recombination while photocatalytic reactions demand efficient charge separation for optimal performance. Herein, a reduced graphene oxide/MXene-derived TiO/polyaniline (GMTP) hydrogel is fabricated, which realizes deep integration of photothermal and photocatalytic performance through multistage carrier pathway engineering and redox potential optimization. The well-designed heterojunction between polyaniline and TiO induces the thermalization of low-energy carriers through interfacial recombination to induce solar-to-thermal energy conversion, while spatially segregated high-energy carriers with preserved redox potentials initiate cascade reactions involving •OH and •O for contaminant degradation. Density functional theory and electron paramagnetic resonance have validated that the carrier-selective mechanism achieves coordinated enhancement of photothermal conversion efficiency and catalytic activity through quantum-level carrier modulation. As a result, the GMTP evaporator exhibits a high-water evaporation rate of 2.81 kg m h under 1 sun illumination as well as outstanding degradation efficiencies of more than 99% for various organic contaminants without additional oxidants. This multilevel carrier regulation strategy shows great potential in environmental remediation and the applications of relieving the freshwater crisis.

摘要

通过集成光热蒸发和光催化实现太阳能驱动的废水处理已成为一种有前景的淡水生成方法,但在协调载流子动力学之间的根本冲突方面仍然是一个挑战,其中光热转换本质上促进电子 - 空穴复合,而光催化反应需要有效的电荷分离以实现最佳性能。在此,制备了一种还原氧化石墨烯/MXene衍生的TiO/聚苯胺(GMTP)水凝胶,其通过多级载流子途径工程和氧化还原电位优化实现了光热和光催化性能的深度集成。聚苯胺与TiO之间精心设计的异质结通过界面复合诱导低能载流子的热化以诱导太阳能到热能的转换,而具有保留氧化还原电位的空间分离的高能载流子引发涉及•OH和•O的级联反应以降解污染物。密度泛函理论和电子顺磁共振已验证,载流子选择性机制通过量子级载流子调制实现了光热转换效率和催化活性的协同增强。结果,GMTP蒸发器在1个太阳光照下表现出2.81 kg m h的高水蒸发速率,并且对于各种有机污染物在无额外氧化剂的情况下具有超过99%的出色降解效率。这种多级载流子调控策略在环境修复和缓解淡水危机的应用中显示出巨大潜力。

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