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基于生物灵感的多功能纸基 rGO 复合材料用于太阳能驱动的清洁水生成。

Bioinspired Multifunctional Paper-Based rGO Composites for Solar-Driven Clean Water Generation.

机构信息

School of Materials Science and Engineering, and State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University , 800 Dongchuan Road, Shanghai 200240, P. R. China.

Department of Mechanical Engineering, University of Michigan , Ann Arbor, Michigan 48109, United States.

出版信息

ACS Appl Mater Interfaces. 2016 Jun 15;8(23):14628-36. doi: 10.1021/acsami.6b04606. Epub 2016 Jun 3.

Abstract

Reusing polluted water through various decontamination techniques has appeared as one of the most practical approaches to address the global shortage of clean water. Rather than relying on single decontamination mechanism, herein we report the preparation and utilization of paper-based composites for multifunctional solar-driven clean water generation that is inspired by the multiple water purification approaches in biological systems. The reduced graphene oxide (rGO) sheets within such composites can efficiently remove organic contaminants through physical adsorption mechanism. Under solar irradiation, the floating rGO composites can instantly generate localized heating, which not only can directly generate clean water through distillation mechanism but also significantly enhance adsorption removal performance with the assistance of upward vapor flow. Such porous-structured paper-based composites allow for facile incorporation of photocatalysts to regenerate clean water out of contaminated water with combined adsorption, photodegradation, and interfacial heat-assisted distillation mechanisms. Within a homemade all-in-one water treatment device, the practical applicability of the composites for multifunctional clean water generation has been demonstrated.

摘要

通过各种净化技术重复利用污染水,已成为解决全球清洁水短缺问题最实用的方法之一。本文受生物系统中多种水净化方法的启发,报告了基于纸张的复合材料的制备和利用,用于多功能太阳能驱动清洁水的产生。此类复合材料中的还原氧化石墨烯(rGO)片可以通过物理吸附机制有效地去除有机污染物。在太阳照射下,漂浮的 rGO 复合材料可以立即产生局部加热,不仅可以通过蒸馏机制直接产生清洁水,而且还可以在向上的蒸汽流的辅助下显著提高吸附去除性能。这种多孔结构的纸基复合材料便于掺入光催化剂,通过吸附、光降解和界面热辅助蒸馏的组合机制,从污染水中再生清洁水。在自制的一体化水处理装置中,证明了复合材料在多功能清洁水生成方面的实际应用。

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