Key Laboratory of Bionic Engineering (Ministry of Education), College of Biological and Agricultural Engineering, Jilin University, Changchun, Jilin 130022, China.
State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun, Jilin 130012, China.
ACS Appl Mater Interfaces. 2021 Apr 28;13(16):19467-19475. doi: 10.1021/acsami.1c02026. Epub 2021 Apr 16.
Solar energy has received extensive attention as a renewable and sufficient energy source. Herein, inspired by the Janus wettability of lotus leaves, we have constructed a bioinspired hydrophilic-hydrophobic Janus hybrid system of carbonized carrot powder (CC powder)-modified cotton cloth with Nafion coating on one side (cotton cloth-NCC) for highly efficient solar steam generation. In cotton cloth-NCC, CC powder functions as a light absorber to achieve high light absorption, whereas the hydrophilic cotton cloth ensures efficient water transport. Meanwhile, the coating of Nafion establishes a hydrophobic-hydrophilic Janus structure, which can not only modulate water supply but also prevent salt deposition even with the high-concentration salt solution. The cotton cloth-NCC has been further shaped into a waved structure (w-cotton cloth-NCC) to increase the water evaporation area and achieve high light absorption (95%). Under 1 sun irradiation, w-cotton cloth-NCC yields a pure water steam generation rate of 1.88 kg m h and a seawater evaporation rate of 1.52 kg m h. Furthermore, the w-cotton cloth-NCC also has a good purification effect on sewage: can be completely removed, and the removal rate of Rhodamine B reaches 98.3%. The simple approach presented here for the construction of a high-efficient, low-cost, environmentally sustainable, long-term stable hydrophobic-hydrophilic Janus solar steam evaporator holds great promise for application in both environmental purification and photothermal conversion.
太阳能作为一种可再生且充足的能源,受到了广泛关注。在此,受荷叶的双疏水性启发,我们构建了一种仿生亲/疏水性 Janus 杂化体系,以碳化胡萝卜粉(CC 粉)改性的一侧涂有 Nafion 涂层的棉织物(棉织物-NCC)为基础,用于高效太阳能蒸汽产生。在棉织物-NCC 中,CC 粉作为光吸收剂,实现了高光吸收,而亲水性棉织物则确保了高效的水传输。同时,Nafion 的涂层形成了亲/疏水性 Janus 结构,不仅可以调节供水,而且即使在高浓度盐溶液中也可以防止盐沉积。棉织物-NCC 进一步被制成波浪形结构(w-棉织物-NCC),以增加水蒸发面积并实现高光吸收(95%)。在 1 个太阳照射下,w-棉织物-NCC 的纯水蒸汽产生速率为 1.88 kg m h,海水蒸发速率为 1.52 kg m h。此外,w-棉织物-NCC 对污水也具有良好的净化效果:COD 可完全去除,罗丹明 B 的去除率达到 98.3%。本文提出的构建高效、低成本、环境可持续、长期稳定的亲/疏水性 Janus 太阳能蒸汽蒸发器的简单方法,在环境净化和光热转换方面具有广阔的应用前景。