表面离子印迹材料在重金属离子处理中的应用:挑战与机遇

Chunxia Ding, Yaocheng Deng, A. Merchant, Jiaying Su, Guangyong Zeng, Xiuyu Long, Mei-e Zhong, Lihua Yang, D. Gong, L. Bai, X. Zhou, Xiang-ying Liu
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引用次数: 4

摘要

表面离子印迹技术(SIIT)是制备离子印迹聚合物的一种新颖而有效的替代方法。SIIT包括在支撑材料上涂上一层聚合物层,该聚合物层选择性地与印迹金属离子结合,特别是重金属离子。由于其特异性、可预测性和稳定性,SIIT已迅速应用于离子检测、分离、富集和传感。在此,基于这一新兴技术的最新进展,我们进行了系统的综述,总结了1)表面离子印迹聚合物(siip)的原理和基本组成;2)无机(矿物、碳质材料、金属氧化物)、有机、复合(有机/有机、有机/无机、无机/无机)三种SIIP支撑材料的制备、性能、优缺点;3) SIIT的当前应用;4)未来与SIIT相关的挑战和机遇。最后,对SIIT技术在重金属离子处理中的应用前景进行了展望和展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Insights into Surface Ion-imprinted Materials for Heavy Metal Ion Treatment: Challenges and Opportunities
ABSTRACT Surface ion-imprinting technology (SIIT) is a novel and effective alternative to conventional methods of preparing ion-imprinted polymers. SIIT involves the coating of support materials with a polymeric layer that selectively binds with imprinted metal ions, particularly heavy metal ions. Given its specificity, predictability, and stability, SIIT has been quickly adopted in ion detection, separation, enrichment, and sensing. Here, building on the latest advances in this emerging new technology, we carried out a systematic review to summarize the 1) principles and basic components of surface ion-imprinted polymers (SIIPs); 2) preparations, properties, advantages, and disadvantages of three types of SIIP supporting materials, including inorganic (minerals, carbonaceous materials, metal oxides), organic, and composite (organic/organic, organic/inorganic, inorganic/inorganic) supports; 3) current applications of SIIT, and 4) future challenges and opportunities related to SIIT. Finally, perspectives and future research are discussed to address the pressing need for the development of SIIT for heavy metal ion treatment.
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