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受硅藻启发的TiO-PANi修饰双层光热泡沫用于太阳能驱动的清洁水生成

Diatom-Inspired TiO-PANi-Decorated Bilayer Photothermal Foam for Solar-Driven Clean Water Generation.

作者信息

Pan Jiefeng, Yu Xiaohong, Dong Jiajing, Zhao Lei, Liu Lingling, Liu Jialin, Zhao Xueting, Liu Lifen

机构信息

College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, P. R. China.

Anhui Province Key Laboratory of Environment-Friendly Polymer Materials, Anhui University, Hefei 230601, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 8;13(48):58124-58133. doi: 10.1021/acsami.1c16603. Epub 2021 Nov 19.

Abstract

Interfacial solar-driven evaporation provides one of the most promising green and sustainable technologies to deal with the knotty water crisis by extracting vapor from a variety of water sources powered by solar energy. Advanced photothermal materials play critical roles in interfacial solar-driven evaporation by photothermal conversion and heat localization. Herein, inspired by the unique hierarchical structure and light-harvesting function of diatoms, we propose a novel photothermal material with a diatom-like hierarchical nanostructure derived from TiO-PANi-decorated bilayer melamine foam (TiO-PANi@MF) for solar-driven clean water generation. The diatom-like hierarchical nanostructured TiO-PANi@MF can realize full-spectrum light absorption and photothermal conversion by enhancing multiple light reflection and light scattering. Thanks to the diatom-like hierarchical nanostructure, TiO-PANi@MF not only impressively achieves an evaporation rate of 2.12 kg m h under 1 sun irradiation but also shows a high solar steam conversion efficiency up to 88.9%. Notably, the TiO-PANi composite also endows TiO-PANi@MF with photocatalytic degradation capability. Apart from the excellent steam generation capability, optimized TiO-PANi@MF also provides the high photocatalytic efficiency of dye degradation and maintains a high evaporation rate of more than 2 kg m h. We believe that the proposed photothermal material with a diatom-like hierarchical nanostructure can envision promising practical applications in seawater desalination and sewage purification.

摘要

界面太阳能驱动蒸发提供了最具前景的绿色可持续技术之一,通过从太阳能驱动的各种水源中提取蒸汽来应对棘手的水危机。先进的光热材料通过光热转换和热局域化在界面太阳能驱动蒸发中发挥关键作用。在此,受硅藻独特的分级结构和光捕获功能的启发,我们提出了一种新型光热材料,即由TiO-PANi修饰的双层三聚氰胺泡沫(TiO-PANi@MF)衍生的具有类硅藻分级纳米结构的材料,用于太阳能驱动的清洁水生成。类硅藻分级纳米结构的TiO-PANi@MF可以通过增强多次光反射和光散射来实现全光谱光吸收和光热转换。得益于类硅藻分级纳米结构,TiO-PANi@MF不仅在1个太阳光照下令人印象深刻地实现了2.12 kg m⁻² h⁻¹的蒸发速率,还显示出高达88.9%的高太阳能蒸汽转换效率。值得注意的是,TiO-PANi复合材料还赋予TiO-PANi@MF光催化降解能力。除了出色的蒸汽产生能力外,优化后的TiO-PANi@MF还具有高的染料降解光催化效率,并保持超过2 kg m⁻² h⁻¹的高蒸发速率。我们相信,所提出的具有类硅藻分级纳米结构的光热材料在海水淡化和污水净化方面具有广阔的实际应用前景。

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