Ghosh Adrija, Orasugh Jonathan Tersur, Ray Suprakas Sinha, Chattopadhyay Dipankar
Department of Polymer Science and Technology, University of Calcutta Kolkata-700009 India.
Department of Chemical Sciences, University of Johannesburg Doorfontein Johannesburg 2028 South Africa
RSC Adv. 2023 Jun 20;13(27):18568-18604. doi: 10.1039/d3ra01370g. eCollection 2023 Jun 15.
Water is an indispensable part of human life that affects health and food intake. Water pollution caused by rapid industrialization, agriculture, and other human activities affects humanity. Therefore, researchers are prudent and cautious regarding the use of novel materials and technologies for wastewater remediation. Graphdiyne (GDY), an emerging 2D nanomaterial, shows promise in this direction. Graphdiyne has a highly symmetrical π-conjugated structure consisting of uniformly distributed pores; hence, it is favorable for applications such as oil-water separation and organic-pollutant removal. The acetylenic linkage in GDY can strongly interact with metal ions, rendering GDY applicable to heavy-metal adsorption. In addition, GDY membranes that exhibit 100% salt rejection at certain pressures are potential candidates for wastewater treatment and water reuse desalination. This review provides deep insights into the structure, properties, and synthesis methods of GDY, owing to which it is a unique, promising material. In the latter half of the article, various applications of GDY in desalination and wastewater treatment have been detailed. Finally, the prospects of these materials have been discussed succinctly.
水是人类生活不可或缺的一部分,影响着健康和食物摄入。快速工业化、农业及其他人类活动造成的水污染影响着人类。因此,研究人员在使用新型材料和技术进行废水处理时谨慎小心。石墨炔(GDY)作为一种新兴的二维纳米材料,在这方面展现出了潜力。石墨炔具有高度对称的π共轭结构,由均匀分布的孔隙组成;因此,它有利于油水分离和有机污染物去除等应用。石墨炔中的炔键能与金属离子强烈相互作用,使石墨炔适用于重金属吸附。此外,在一定压力下表现出100%拒盐率的石墨炔膜是废水处理和水回用脱盐的潜在候选材料。本综述深入探讨了石墨炔的结构、性质和合成方法,正因如此,它是一种独特且有前景的材料。在文章后半部分,详细介绍了石墨炔在脱盐和废水处理中的各种应用。最后,简要讨论了这些材料的前景。