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基于多巴胺功能化 MoO 量子点的 UO 的超灵敏检测。

Ultrasensitive detection of UO based on dopamine-functionalized MoO quantum dots.

机构信息

Fundamental Science on Radioactive Geology and Exploration Technology Laboratory, East China University of Technology (ECUT), Nanchang, China.

School of Chemistry, Biology and Material Science, ECUT, Nanchang, China.

出版信息

Luminescence. 2022 Jan;37(1):127-133. doi: 10.1002/bio.4153. Epub 2021 Nov 26.

Abstract

Uranium is an important nuclear fuel and the risk of human exposure to uranium increases as increasing amounts of uranium-containing waste enter the environment due to the rapid growth of nuclear power. Therefore, rapid, sensitive, and portable uranium detection is a promising approach to effectively control and monitor uranium contamination. To achieve this goal, abundant oxygen- and nitrogen-containing groups were introduced to molybdenum oxide quantum dot (MoO QDs) surfaces with dopamine (DA) modification. Due to the excellent coordination ability of oxygen- and nitrogen-containing groups with uranium, the obtained DA-functionalized MoO QDs (DA-MoOx QDs) showed a strong binding affinity for uranium and sensitivity was increased nearly 1000-fold compared with MoO QDs alone. The limit of detection was 3.85 nM, which is higher than most of the reported nanomaterials. Moreover, the DA-MoOx QD-based method showed high selectivity and uranium could be clearly detected under masking with ethylenediaminetetraacetic acid even when the concentration of other metal ions was 100-fold higher than that of uranium, showing a very promising method for uranium contamination control and monitoring.

摘要

铀是一种重要的核燃料,随着核能的快速发展,越来越多含铀废物进入环境,人类接触铀的风险也在增加。因此,快速、灵敏、便携的铀检测是有效控制和监测铀污染的一种很有前途的方法。为了实现这一目标,在多巴胺(DA)修饰的钼氧化物量子点(MoO QDs)表面引入了丰富的含氧和含氮基团。由于含氧和含氮基团与铀的优异配位能力,所得到的 DA 功能化 MoO QDs(DA-MoOx QDs)对铀表现出很强的结合亲和力,灵敏度比单独的 MoO QDs 提高了近 1000 倍。检测限为 3.85 nM,高于大多数已报道的纳米材料。此外,基于 DA-MoOx QD 的方法表现出高选择性,即使在乙二胺四乙酸掩蔽下,当其他金属离子的浓度是铀的 100 倍时,仍能清楚地检测到铀,为铀污染控制和监测提供了一种很有前途的方法。

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