Zhang Xingzhen, Zhou Shouyong, Wang Zhigang, Wei Xian, Zhang Shenxiang, Jin Jian
School of Chemistry and Chemical Engineering, Jiangsu Engineering Laboratory for Environment Functional Materials, Huaiyin Normal University, Huaian 223300, China.
College of Chemistry, Chemical Engineering and Materials Science; Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application; Suzhou Key Laboratory of Macromolecular Design and Precision Synthesis, Soochow University, Suzhou 215123, China.
ACS Appl Mater Interfaces. 2023 Nov 1;15(43):50196-50205. doi: 10.1021/acsami.3c11299. Epub 2023 Oct 23.
Hydrogel-based evaporators are a promising strategy to obtain freshwater from seawater and sewage. However, the time-consuming and energy-consuming methods used in hydrogel preparation, as well as their limited scalability, are major factors that hinder the development of a hydrogel-based evaporator. Herein, a facile and scalable strategy was designed to prepare a hydrogel-coated evaporator to realize efficient solar-driven water evaporation. The hydrogel coating layer is composed of a robust 3D network formed by tannic acid (TA) and poly(vinyl alcohol) (PVA) through a hydrogen bond. With the assistance of TA surface modifier, carbon black (CB) is uniformly distributed within the hydrogel matrix, endowing the coating with remarkable photothermal properties. In addition, Fe is deposited on the surface of the hydrogel coating through metal coordination with TA, further improving the light absorption of the coating. Due to the synergistic effect of CB and Fe, the hydrogel-coated foam exhibited excellent photothermal properties. The water evaporation rate reached 3.64 kg m h under 1 sun irradiation. Because of the hydration ability of PVA hydrogel and the large porous structure of the foam, the hydrogel-coated foam demonstrated excellent antifouling performance and salt resistance. This study provides a facile method for designing and manufacturing high-performance solar-driven water evaporation materials.
基于水凝胶的蒸发器是一种从海水和污水中获取淡水的很有前景的策略。然而,水凝胶制备过程中耗时且耗能的方法,以及其有限的可扩展性,是阻碍基于水凝胶的蒸发器发展的主要因素。在此,设计了一种简便且可扩展的策略来制备水凝胶涂层蒸发器,以实现高效的太阳能驱动水蒸发。水凝胶涂层由单宁酸(TA)和聚乙烯醇(PVA)通过氢键形成的坚固三维网络组成。在TA表面改性剂的辅助下,炭黑(CB)均匀分布在水凝胶基质中,赋予涂层显著的光热性能。此外,通过与TA的金属配位作用,Fe沉积在水凝胶涂层表面,进一步提高了涂层的光吸收。由于CB和Fe的协同作用,水凝胶涂层泡沫表现出优异的光热性能。在1个太阳辐照下,水蒸发速率达到3.64 kg m² h⁻¹。由于PVA水凝胶的水合能力和泡沫的大孔结构,水凝胶涂层泡沫表现出优异的抗污性能和耐盐性。本研究为设计和制造高性能太阳能驱动水蒸发材料提供了一种简便方法。