State Key Laboratory of Pollution Control and Resource Reuse, College of Environmental Science and Engineering, Tongji University , 1239 Siping Road, Shanghai 200092, China.
College of Chemistry and Environmental Engineering, Shanghai Institute of Technology , Shanghai 2001418, China.
Environ Sci Technol. 2017 Nov 7;51(21):12283-12292. doi: 10.1021/acs.est.7b02227. Epub 2017 Oct 9.
Water as the universal solvent has well-demonstrated its ability to dissolve many substances, but buried water inside different nanoporous materials always exhibits some unusual behaviors. Herein, 3D porous graphene hydrogel (GH) is developed as a super-adsorbent to remove different pollutants (antibiotics, dyes, and heavy ions) for water purification. Due to its highly porous structure and high content of water, GH also demonstrated its super adsorption capacity for adsorbing and removing different pollutants (antibiotics, dyes, and heavy ions) as compared to conventional graphene aerogel (GA). More fundamentally, the buried-water enhanced adsorption mechanism was proposed and demonstrated, such that buried water in GH plays the combinatorial roles as (1) supporting media, (2) transport nanochannels, and (3) hydrogen bondings in promoting pollutant adsorption. In parallel, molecular dynamics simulations further confirm that buried water in GH has the stronger interaction with pollutants via hydrogen bonds than other buried alcohols. GH integrates the merit of both graphene (e.g., fine chemical resistance and excellent mechanical property) and hydrogel (e.g., high water content, porous structure, and simple solution-based processability and scalability), giving it promising potential for environmental applications.
水作为一种通用溶剂,已经很好地证明了它能够溶解许多物质,但埋藏在不同纳米多孔材料中的水总是表现出一些不同寻常的行为。在此,开发了 3D 多孔石墨烯水凝胶 (GH) 作为一种超级吸附剂,用于去除水中的不同污染物(抗生素、染料和重金属离子)以进行水净化。由于其具有高度多孔的结构和高含量的水,GH 还表现出比传统石墨烯气凝胶 (GA) 更强的吸附能力,用于吸附和去除不同污染物(抗生素、染料和重金属离子)。更根本的是,提出并证明了埋藏水增强吸附的机制,即 GH 中的埋藏水在促进污染物吸附中起组合作用(1)支撑介质、(2)传输纳米通道和(3)氢键。平行地,分子动力学模拟进一步证实,GH 中的埋藏水通过氢键与污染物的相互作用强于其他埋藏醇。GH 结合了石墨烯的优点(例如,良好的耐化学性和优异的机械性能)和水凝胶的优点(例如,高含水量、多孔结构以及简单的基于溶液的可加工性和可扩展性),为其在环境应用中具有广阔的应用前景。