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基于碳和石墨烯量子点的架构用于通过吸附色谱技术进行高效水净化 - 现状与展望。

Carbon and graphene quantum dots based architectonics for efficient aqueous decontamination by adsorption chromatography technique - Current state and prospects.

机构信息

School of Environmental Sciences, Jawaharlal Nehru University, New Delhi, India, 110067; Research Center for Precision Environmental Medicine, Kaohsiung Medical University (KMU), Kaohsiung City, 807, Taiwan.

School of Environmental Sciences, Jawaharlal Nehru University, New Delhi, India, 110067.

出版信息

Environ Res. 2024 Jun 15;251(Pt 1):118541. doi: 10.1016/j.envres.2024.118541. Epub 2024 Feb 28.

DOI:10.1016/j.envres.2024.118541
PMID:38417656
Abstract

Aquatic ecosystems and potable water are being exploited and depleted due to urbanization and the encouragement of extensive industrialization, which induces the scarcity of pure water. However, current decontamination methods are limited and inefficient. Various innovative remediation strategies with novel nanomaterials have recently been demonstrated for wastewater treatment. Carbon dots (C-dots) and graphene quantum dots (GQ-dots) are the most recent frontiers in carbon nanomaterial-based adsorption studies. C-dots are extremely small (1-10 nm) quasi-spherical carbon nanoparticles (mostly sp hybridized carbon), whereas GQ-dots are fragments of graphene (1-20 nm) composed of primarily sp hybridized carbon. This article highlights the function of C-dots and GQ-dots with their specifications and characteristics for the efficient removal of organic and inorganic contaminants in water via adsorption chromatography. The alteration of adsorption attributes with the hybrid blending of these dots has been critically analyzed. Moreover, various top-down and bottom-up approaches for synthesizing C-dots and GQ-dots, which ultimately affect their morphology and structure, are described in detail. Finally, we review the research deficit in the adsorption of diverse pollutants, fabrication challenges, low molecular weight, self-agglomeration, and the future of the dots by providing research prospects and selectivity and sensitivity perspectives, the importance of post-adsorption optimization strategies and the path toward scalability at the tail of the article.

摘要

由于城市化和广泛工业化的鼓励,水生生态系统和饮用水源正被开发和耗尽,导致纯净水资源短缺。然而,目前的净化方法有限且效率低下。最近,各种使用新型纳米材料的创新修复策略已被证明可用于处理废水。碳点 (C-dots) 和石墨烯量子点 (GQ-dots) 是基于碳纳米材料吸附研究的最新前沿。C-dots 是非常小的 (1-10nm) 类球形碳纳米粒子(主要是 sp 杂化碳),而 GQ-dots 是石墨烯的碎片(1-20nm),主要由 sp 杂化碳组成。本文重点介绍了 C-dots 和 GQ-dots 的功能及其规格和特性,它们通过吸附色谱法可有效地去除水中的有机和无机污染物。本文还对这些点的杂化混合对吸附特性的改变进行了批判性分析。此外,还详细描述了各种自上而下和自下而上的方法来合成 C-dots 和 GQ-dots,这些方法最终会影响它们的形态和结构。最后,我们通过提供研究前景和选择性和敏感性的观点,综述了吸附各种污染物、制造挑战、低分子量、自聚集以及文章末尾的点的未来,后吸附优化策略的重要性和可扩展性的途径,探讨了研究不足。

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