Wu Mengchun, Li Renyuan, Shi Yusuf, Altunkaya Mustafa, Aleid Sara, Zhang Chenlin, Wang Wenbin, Wang Peng
Water Desalination and Reuse Center, Division of Biological and Environmental Science and Engineering, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia.
Mater Horiz. 2021 May 1;8(5):1518-1527. doi: 10.1039/d0mh02051f. Epub 2021 Mar 10.
Metal- and halide-free, solid-state water vapor sorbents are highly desirable for water-sorption-based applications, because most of the solid sorbents suffer from low water sorption capacity caused by their rigid porosity, while the liquid sorbents are limited by their fluidity and strong corrosivity, which is caused by the halide ions. Herein, we report a novel type of highly efficient and benign polymeric sorbent, which contains no metal or halide, and has an expandable solid state when wet. A group of sorbents are synthesized by polymerizing and crosslinking the metal-free quaternary ammonium monomers followed by an ion-exchange process to replace chloride anions with benign-anions, including acetate, oxalate, and citrate. They show significantly reduced corrosivity and improved water sorption capacity. Importantly, the water sorption capacity of the acetate paired hydrogel is among the best of the literature reported hygroscopic polymers in their pure form, even though the hydrogel is crosslinked. The hydrogel-based sorbents are further used for water-sorption-driven cooling and atmospheric water harvesting applications, which show improved coefficient of performance (COP) and high freshwater production rate, respectively. The results of this work would inspire more research interest in developing better water sorbents and potentially broaden the application horizon of water-sorption-based processes towards the water-energy nexus.
无金属和卤化物的固态水蒸气吸附剂对于基于水吸附的应用来说是非常理想的,因为大多数固体吸附剂由于其刚性孔隙率导致水吸附能力较低,而液体吸附剂则受到其流动性和由卤离子引起的强腐蚀性的限制。在此,我们报道了一种新型的高效且良性的聚合物吸附剂,它不含金属或卤化物,并且在潮湿时具有可膨胀的固态。通过使无金属的季铵单体聚合和交联,随后进行离子交换过程,用包括乙酸根、草酸根和柠檬酸根等良性阴离子取代氯离子,合成了一组吸附剂。它们的腐蚀性显著降低,水吸附能力得到提高。重要的是,尽管该水凝胶是交联的,但乙酸根配对水凝胶的水吸附能力在文献报道的纯形式吸湿聚合物中名列前茅。基于水凝胶的吸附剂进一步用于水吸附驱动的冷却和大气取水应用,分别显示出提高的性能系数(COP)和高淡水生产率。这项工作的结果将激发更多关于开发更好的水吸附剂的研究兴趣,并有可能拓宽基于水吸附过程在水 - 能源关系方面的应用范围。