Zhang Yue, Yin Xiangyu, Yu Bo, Wang Xiaolong, Guo Qiuquan, Yang Jun
State Key Laboratory of Solid Lubrication , Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences , Lanzhou 730000 , China.
Department of Mechanical and Materials Engineering , Western University , London , Ontario N6A 5B9 , Canada.
ACS Appl Mater Interfaces. 2019 Sep 4;11(35):32559-32568. doi: 10.1021/acsami.9b10076. Epub 2019 Aug 22.
Solar desalination of seawater is an attractive and environmentally friendly method to solve the long-standing water crisis. However, its efficiency is highly reliant on solar intensity. Additionally, increasing contamination in water makes it difficult to generate clean water through the solo desalination process. To address this, we propose a polydopamine (PDA)-functionalized hybrid material with dual-purpose solar evaporation and contaminant adsorption for highly efficient clean water production in all-weather conditions. The hybrid material is fabricated by polymerization of dopamine onto a commercial sponge in a facile, low-cost, and scalable manner. With excellent light absorption and chelation capabilities, the PDA film coated on sponge acts as both a photothermal material and adsorbent that allow us to achieve clean water production with solar desalination when sunshine and with contaminant adsorption when cloudy or at night. Meanwhile, the solar evaporation and contaminant adsorption of the PDA-sponge are synergized with one another, resulting in the PDA-sponge that is a desirable material with the capability of continuous clean water production in all-weather conditions. The PDA-sponge is also highly recyclable with a high retention rate of evaporation and adsorption efficiency even after 10 cycles. The promising PDA-based hybrid is believed to inspire new strategies for superior water treatment materials.
海水的太阳能淡化是一种极具吸引力且环保的方法,可解决长期存在的水危机。然而,其效率高度依赖于太阳光照强度。此外,水中污染物的增加使得仅通过淡化过程难以产生清洁水。为了解决这一问题,我们提出了一种聚多巴胺(PDA)功能化的混合材料,它具有双重功能,即太阳能蒸发和污染物吸附,可在全天候条件下高效生产清洁水。这种混合材料是通过将多巴胺以简便、低成本且可扩展的方式聚合到商用海绵上制成的。涂覆在海绵上的PDA膜具有出色的光吸收和螯合能力,既作为光热材料又作为吸附剂,使我们能够在阳光充足时通过太阳能淡化生产清洁水,在阴天或夜间进行污染物吸附。同时,PDA海绵的太阳能蒸发和污染物吸附相互协同,使得PDA海绵成为一种理想的材料,能够在全天候条件下持续生产清洁水。PDA海绵还具有高度可回收性,即使经过10次循环后,蒸发和吸附效率的保留率仍很高。这种基于PDA的有前景的混合材料有望激发新型优质水处理材料的策略。