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Improved AIE-Active Probe with High Sensitivity for Accurate Uranyl Ion Monitoring in the Wild Using Portable Electrochemiluminescence System for Environmental Applications

机译:利用便携式电化学系统进行环境应用,改善具有高灵敏度的AIE-活性探针,用于野生的野生铀酰离子监测

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Abstract The development of highly sensitive and selective uranyl ion (UO22+) probes has attracted significant attention owing to the threat to human health caused by high toxicity, radioactivity, and long half‐life. Herein, the development of aggregation‐induced emission (AIE) active polymer dots (Pdots) is described for an accurate UO22+ monitoring using a portable electrochemiluminescence (ECL) system. An AIE‐active polymer containing tetraphenylethene and boron ketoiminate moieties is prepared into Pdots and modified with ssDNA to capture UO22+, which can amplify the ECL signal of the Pdots through a resonance energy transfer mechanism. This probe provides an ultralow detection limit of 10.6 pm/2.5 ppt, which is at least two orders of magnitude lower than the known UO22+ luminescent probes. Only UO22+ can provide an obvious ECL enhancement among the various metal ions, indicating the excellent selectivity of this probe. Furthermore, a portable ECL analyzer is designed to realize UO22+ measurements in the wild. The anodic ECL mechanism of UO22+ is discovered and ECL technology is first applied in monitoring radioactive substances. This study provides a novel strategy for the development of accurate UO22+ probes and a practical UO22+ monitoring method, indicating its potential application in the environmental and energy fields.
机译:摘要高敏感和选择性铀酰离子(UO22 +)探针的发展引起了对人类健康造成的威胁,放射性和长半衰期造成的威胁引起了显着的关注。这里,使用便携式电化学发光(ECL)系统的精确UO22 +监测描述了聚集诱导的发射(AIE)活性聚合物点(PDOTS)的发育。将含有四苯基乙烯和硼酮亚昔铵部分的AIE-活性聚合物制备成PDOT并用SSDNA改性以捕获UO22 +,其可以通过共振能量转移机制扩增PDOS的ECL信号。该探头提供了高于10.6MP / 2.5 PPT的超低检测限,这是比已知的UO22 +发光探针低的至少两个数量级。只有UO22 +可以在各种金属离子中提供明显的ECL增强,表明该探针的优异选择性。此外,便携式ECL分析仪旨在实现野外的UO22 +测量。发现了UO22 +的阳极ECL机制,并首先在监测放射性物质中应用ECL技术。本研究提供了一种新的策略,用于开发精确的UO22 +探针和实用的UO22 +监测方法,表明其在环境和能源领域的潜在应用。

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