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用于清洁水生产的超越石墨烯的二维光热材料的兴起

The Rise of 2D Photothermal Materials beyond Graphene for Clean Water Production.

作者信息

Xie Zhongjian, Duo Yanhong, Lin Zhitao, Fan Taojian, Xing Chenyang, Yu Li, Wang Renheng, Qiu Meng, Zhang Yupeng, Zhao Yonghua, Yan Xiaobing, Zhang Han

机构信息

Shenzhen Engineering Laboratory of Phosphorene and Optoelectronics SZU-NUS Collaborative Innovation Center for Optoelectronic Science & Technology International Collaborative Laboratory of 2D Materials for Optoelectronics Science and Technology of Ministry of Education College of Physics and Optoelectronic Engineering Shenzhen University Shenzhen 518060 China.

Faculty of Information Technology Macau University of Science and Technology Macao 519020 P. R. China.

出版信息

Adv Sci (Weinh). 2020 Jan 27;7(5):1902236. doi: 10.1002/advs.201902236. eCollection 2020 Mar.

Abstract

Water shortage is one of the most concerning global challenges in the 21st century. Solar-inspired vaporization employing photothermal nanomaterials is considered to be a feasible and green technology for addressing the water challenge by virtue of abundant and clean solar energy. 2D nanomaterials aroused considerable attention in photothermal evaporation-induced water production owing to their large absorption surface, strong absorption in broadband solar spectrum, and efficient photothermal conversion. Herein, the recent progress of 2D nanomaterials-based photothermal evaporation, mainly including emerging Xenes (phosphorene, antimonene, tellurene, and borophene) and binary-enes (MXenes and transition metal dichalcogenides), is reviewed. Then, the optimization strategies for higher evaporation performance are summarized in terms of modulation of the intrinsic photothermal performance of 2D nanomaterials and design of the complete evaporation system. Finally, the challenges and prospective of various kinds of 2D photothermal nanomaterials are discussed in terms of the photothermal performance, stability, environmental influence, and cost. One important principle is that solutions for water challenges should not introduce new environmental and social problems. This Review aims to highlight the role of 2D photothermal nanomaterials in solving water challenges and provides a viable scheme toward the practical use in photothermal materials selection, design, and evaporation systems building.

摘要

水资源短缺是21世纪最令人担忧的全球挑战之一。利用光热纳米材料的太阳能激发汽化,凭借丰富且清洁的太阳能,被认为是应对水挑战的一种可行且绿色的技术。二维纳米材料因其大吸收表面、在宽带太阳光谱中的强吸收以及高效的光热转换,在光热蒸发诱导产水方面引起了相当大的关注。在此,综述了基于二维纳米材料的光热蒸发的最新进展,主要包括新兴的Xenes(磷烯、锑烯、碲烯和硼烯)和二元烯(MXenes和过渡金属二硫属化物)。然后,从二维纳米材料本征光热性能的调制和完整蒸发系统的设计方面,总结了实现更高蒸发性能的优化策略。最后,从光热性能、稳定性、环境影响和成本方面讨论了各类二维光热纳米材料面临的挑战和前景。一个重要原则是,应对水挑战的解决方案不应引入新的环境和社会问题。本综述旨在突出二维光热纳米材料在解决水挑战中的作用,并为光热材料选择、设计和蒸发系统构建的实际应用提供可行方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00c0/7055570/03bde3d525f3/ADVS-7-1902236-g001.jpg

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