MXenes在海水淡化、水净化及抗菌方面的应用进展

IF 5.8 2区 环境科学与生态学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Hicham Meskher, Amrit Kumar Thakur, Soumya Kanti Hazra, Md. Shamim Ahamed, Ahmed Mortuza Saleque, Qusay F. Alsalhy, Muhammad Wakil Shahzad, Md. Nahian Al Subri Ivan, Shuvra Saha and Iseult Lynch
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引用次数: 0

摘要

膜已经成为解决全球淡水短缺挑战的基础,特别是在海水淡化和水净化领域。MXenes以其显著的高纵横比、广泛的表面积、强大的机械强度和持久的化学回弹性而闻名,已成为极具发展前景的膜材料。近年来MXene膜的研究和应用进展,特别是在海水淡化和水处理领域的研究和应用,标志着该领域的重大飞跃。本研究对mxene基膜的制造和增强的最新发展进行了详尽的分析。它深入研究了它们在各种海水淡化过程中的应用,包括基于膜的海水淡化和太阳能驱动的界面蒸汽产生,以及它们在水净化中的应用。该分析揭示了它们在海水淡化过程中的功效,以及评估它们的抗菌性能和排盐效率。此外,本文还对MXene膜功能背后的机制进行了深入的研究,并评估了它们的总体影响,指出了它们目前所面临的机遇和挑战。本次讨论的主要目标是丰富对MXene膜技术的集体理解,并促进该领域的持续改进和创新。通过这样做,本综述旨在通过开发更高效和有效的膜技术,促进可持续解决水资源短缺问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recent advances in applications of MXenes for desalination, water purification and as an antibacterial: a review

Recent advances in applications of MXenes for desalination, water purification and as an antibacterial: a review

Membranes have become a basis in tackling the global challenge of freshwater scarcity, notably in the fields of desalination and water purification. MXenes, distinguished by their notable high aspect ratio, extensive surface area, robust mechanical strength, and enduring chemical resilience, have emerged as highly promising materials for membrane development. Recent progress in the research and application of MXene membranes, especially in the areas of water desalination and treatment, marks a significant leap forward in this domain. This study conducts an exhaustive analysis of the state-of-the-art developments in the creation and enhancement of MXene-based membranes. It delves into their application in various desalination processes, including membrane-based desalination and solar-driven interfacial steam generation, alongside their use in water purification. This analysis sheds light on their efficacy in desalination processes, in addition to evaluating their antimicrobial properties and salt rejection efficiency. Moreover, the review provides an in-depth examination of the mechanics behind MXene membranes and assesses their overall impact, pinpointing both the current opportunities they present and the challenges they face. The primary goal of this discussion is to enrich the collective understanding of MXene membrane technology and to drive continuous improvement and innovation in this area. By doing so, it aims to contribute to the advancement of sustainable solutions to water scarcity through the development of more efficient and effective membrane technologies.

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来源期刊
Environmental Science: Nano
Environmental Science: Nano CHEMISTRY, MULTIDISCIPLINARY-ENVIRONMENTAL SCIENCES
CiteScore
12.20
自引率
5.50%
发文量
290
审稿时长
2.1 months
期刊介绍: Environmental Science: Nano serves as a comprehensive and high-impact peer-reviewed source of information on the design and demonstration of engineered nanomaterials for environment-based applications. It also covers the interactions between engineered, natural, and incidental nanomaterials with biological and environmental systems. This scope includes, but is not limited to, the following topic areas: Novel nanomaterial-based applications for water, air, soil, food, and energy sustainability Nanomaterial interactions with biological systems and nanotoxicology Environmental fate, reactivity, and transformations of nanoscale materials Nanoscale processes in the environment Sustainable nanotechnology including rational nanomaterial design, life cycle assessment, risk/benefit analysis
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