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工程二维纳米材料:水净化和监测的新兴范例。

Engineered two-dimensional nanomaterials: an emerging paradigm for water purification and monitoring.

机构信息

Artie McFerrin Department of Chemical Engineering, Texas A&M University, College Station, TX 77843, USA.

出版信息

Mater Horiz. 2021 Mar 1;8(3):758-802. doi: 10.1039/d0mh01358g. Epub 2020 Dec 8.

Abstract

Water scarcity has become an increasingly complex challenge with the growth of the global population, economic expansion, and climate change, highlighting the demand for advanced water treatment technologies that can provide clean water in a scalable, reliable, affordable, and sustainable manner. Recent advancements on 2D nanomaterials (2DM) open a new pathway for addressing the grand challenge of water treatment owing to their unique structures and superior properties. Emerging 2D nanostructures such as graphene, MoS, MXene, h-BN, g-CN, and black phosphorus have demonstrated an unprecedented surface-to-volume ratio, which promises ultralow material use, ultrafast processing time, and ultrahigh treatment efficiency for water cleaning/monitoring. In this review, we provide a state-of-the-art account on engineered 2D nanomaterials and their applications in emerging water technologies, involving separation, adsorption, photocatalysis, and pollutant detection. The fundamental design strategies of 2DM are discussed with emphasis on their physicochemical properties, underlying mechanism and targeted applications in different scenarios. This review concludes with a perspective on the pressing challenges and emerging opportunities in 2DM-enabled wastewater treatment and water-quality monitoring. This review can help to elaborate the structure-processing-property relationship of 2DM, and aims to guide the design of next-generation 2DM systems for the development of selective, multifunctional, programmable, and even intelligent water technologies. The global significance of clean water for future generations sheds new light and much inspiration in this rising field to enhance the efficiency and affordability of water treatment and secure a global water supply in a growing portion of the world.

摘要

水资源短缺随着全球人口增长、经济扩张和气候变化而成为一个日益复杂的挑战,凸显了对先进水处理技术的需求,这些技术可以以可扩展、可靠、经济实惠和可持续的方式提供清洁水。二维纳米材料(2DM)的最新进展为解决水处理这一重大挑战开辟了新途径,这要归功于它们独特的结构和卓越的性能。新兴的二维纳米结构,如石墨烯、MoS、MXene、h-BN、g-CN 和黑磷,具有前所未有的比表面积,有望实现超低材料用量、超快处理时间和超高水处理效率,从而实现水的清洁/监测。在这篇综述中,我们提供了关于工程二维纳米材料及其在新兴水技术中的应用的最新进展,包括分离、吸附、光催化和污染物检测。讨论了 2DM 的基本设计策略,重点介绍了它们的物理化学性质、潜在机制以及在不同场景中的目标应用。本文最后对基于 2DM 的废水处理和水质监测所面临的紧迫挑战和新兴机遇进行了展望。本文综述有助于阐述 2DM 的结构-加工-性能关系,并旨在指导下一代 2DM 系统的设计,以开发选择性、多功能、可编程甚至智能水技术。清洁水对未来几代人的全球意义为这一新兴领域提供了新的启示,以提高水处理的效率和可负担性,并确保在世界上越来越多的地区实现全球供水。

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