Ranjan Pranay, Li Zhixuan, Ansari Arshiya, Ahmed Shahzad, Siddiqui Moin Ali, Zhang Shizhuo, Patole Shashikant P, Cheng Gary J, Sadki El Hadi S, Vinu Ajayan, Kumar Prashant
Department of Metallurgical and Materials Engineering, Indian Institute of Technology Jodhpur, Jodhpur, Rajasthan, 342037, India.
Global Innovative Centre for Advanced Nanomaterials (GICAN), College of Engineering, Science and Environment (CESE), School of Engineering, The University of Newcastle, University Drive, Callaghan, New South Wales, 2308, Australia.
Small. 2024 Dec;20(51):e2407160. doi: 10.1002/smll.202407160. Epub 2024 Oct 10.
Water polluted by toxic chemicals due to waste from chemical/pharmaceuticals and harmful microbes such as E. Coli bacteria causes several fatal diseases; and therefore, water filtration is crucial for accessing clean and safe water necessary for good health. Conventional water filtration technologies include activated carbon filters, reverse osmosis, and ultrafiltration. However, they face several challenges, including high energy consumption, fouling, limited selectivity, inefficiencies in removing certain contaminants, dimensional control of pores, and structural/chemical changes at higher thermal conditions and upon prolonged usage of water filter. Recently, the advent of 2D materials such as graphene, BN, MoS, MXenes, and so on opens new avenues for advanced water filtration systems. This review delves into the nanoarchitectonics of 2D materials for water filtration applications. The current state of water filtration technologies is explored, the inherent challenges they face are outlines, and the unique properties and advantages of 2D materials are highlighted. Furthermore, the scope of this review is discussed, which encompasses the synthesis, characterization, and application of various 2D materials in water filtration, providing insights into future research directions and potential industrial applications.
来自化学/制药行业的废物以及大肠杆菌等有害微生物所产生的有毒化学物质污染的水会引发多种致命疾病;因此,水过滤对于获取健康所需的清洁安全水至关重要。传统的水过滤技术包括活性炭过滤器、反渗透和超滤。然而,它们面临着几个挑战,包括高能耗、污染、选择性有限、去除某些污染物效率低下、孔隙尺寸控制以及在较高温度条件下和水过滤器长期使用时的结构/化学变化。最近,石墨烯、氮化硼、二硫化钼、MXenes等二维材料的出现为先进的水过滤系统开辟了新途径。本综述深入探讨了用于水过滤应用的二维材料的纳米结构。探讨了水过滤技术的现状,概述了它们面临的固有挑战,并突出了二维材料的独特性能和优势。此外,还讨论了本综述的范围,其中包括各种二维材料在水过滤中的合成、表征和应用,为未来的研究方向和潜在的工业应用提供了见解。