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用于快速吸附和灵敏检测CrO的含氮硼共掺杂MXene量子点的智能纸质材料

Smart paper-based materials incorporating nitrogen and boron co-doped MXene quantum dots for rapid adsorption and sensitive detection of CrO.

作者信息

Yu Zhaochuan, Deng Chao, Jiang Shan, Liu Yuqian, Liu Chao, Seidi Farzad, Zhang Xing, Huang Yang, Wu Weibing, Han Jingquan, Yong Qiang, Xiao Huining

机构信息

International Innovation Center for Forest Chemicals and Materials and Jiangsu Co-Innovation Center for Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, China.

International Innovation Center for Forest Chemicals and Materials and Jiangsu Co-Innovation Center for Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, China; Macromolecular Chemistry and Bavarian Polymer Institute, University of Bayreuth, 95440 Bayreuth, Germany.

出版信息

J Colloid Interface Sci. 2025 Feb;679(Pt A):510-520. doi: 10.1016/j.jcis.2024.10.007. Epub 2024 Oct 2.

Abstract

Dichromate ion (CrO) is a highly toxic chromium-containing compound that poses significant hazards to the digestive, respiratory systems, skin, and mucous membranes. Currently, the detection and adsorption of CrO face significant challenges, including the time-consuming and low sensitivity nature of traditional analytical methods. The limited efficiency and capacity of existing adsorbents hinder their practical application in real-time water quality monitoring and environmental remediation. Herein, using polyethyleneimine-functionalized (PEI) pulp fiber paper as the substrate, we developed smart paper-based materials (designated as NB-MQDs@PP) incorporated with nitrogen and boron co-doped MXene quantum dots (NB-MQDs) for rapid adsorption and sensitive detection of CrO. Compared to undoped MQDs, NB-MQDs exhibited longer excitation wavelength and enhanced oxidation stability. As anticipated, NB-MQDs achieved rapid (response time of 10 s) and sensitive (detection limit of 1.2 μM) recognition of CrO within a wide pH range with a quenching efficiency of 99.9%. Simultaneously, two on-site detection methods, immersion and cyclic filtration, were constructed based on NB-MQDs@PP. The detection limit of the immersion method was 17.0 nM, while the cyclic filtration method had a detection limit as low as 3.8 nM, surpassing the majority of those reported literatures. Remarkably, NB-MQDs@PP exhibited outstanding enrichment capacity towards CrO, with an adsorption capacity of up to 162.4 mg/g. This work provides a novel strategy for creating unique paper-based materials with excellent capture and monitoring dual-function, which can be customized according to the requirements of various application scenarios.

摘要

重铬酸根离子(CrO)是一种剧毒的含铬化合物,对消化系统、呼吸系统、皮肤和黏膜构成重大危害。目前,CrO的检测和吸附面临重大挑战,包括传统分析方法耗时且灵敏度低的问题。现有吸附剂的效率和容量有限,阻碍了它们在实时水质监测和环境修复中的实际应用。在此,我们以聚乙烯亚胺功能化(PEI)纸浆纤维纸为基材,开发了一种智能纸质材料(命名为NB-MQDs@PP),该材料结合了氮硼共掺杂的MXene量子点(NB-MQDs),用于快速吸附和灵敏检测CrO。与未掺杂的MQDs相比,NB-MQDs表现出更长的激发波长和更高的氧化稳定性。正如预期的那样,NB-MQDs在较宽的pH范围内实现了对CrO的快速(响应时间为10秒)和灵敏(检测限为1.2 μM)识别,猝灭效率为99.9%。同时,基于NB-MQDs@PP构建了两种现场检测方法,即浸渍法和循环过滤法。浸渍法的检测限为17.0 nM,而循环过滤法的检测限低至3.8 nM,超过了大多数已报道文献中的检测限。值得注意的是,NB-MQDs@PP对CrO表现出出色的富集能力,吸附容量高达162.4 mg/g。这项工作为制备具有优异捕获和监测双重功能的独特纸质材料提供了一种新策略,可根据各种应用场景的需求进行定制。

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