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Simultaneous sensitive detection and rapid adsorption of UO22+ based on a post-modified sp(2) carbon-conjugated covalent organic framework

机译:基于改性后的SP(2)碳共轭的共价有机框架,UO22 +同时敏感检测和快速吸附

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摘要

As one of the most important elements in the nuclear industry, uranium has both radioactivity and chemical toxicity, which can harm human beings when released into the natural environment. It is difficult for most uranium adsorbents to maintain good stability under strong radiation and acid conditions. Therefore, it is highly desirable to develop a stable adsorbent for the rapid detection and efficient removal of uranium. Herein, we first constructed an amidoxime-functionalized luminescent sp(2) carbon linked covalent organic framework (TP-COF-AO), which is rich in amidoxime groups, has open 1D channels and an extraordinarily stable framework. Based on these advantages, it can reduce UO22+ from 9.25 ppm to below 10 ppb within 10 min and has a high adsorption capacity (436 mg g(-1)). Meanwhile, the adsorption of UO22+ on TP-COF-AO results in rapid fluorescence quenching (within 2 s) with an ultra-low detection limit (8.3 nM), which is well below the maximum contamination standard in drinking water prescribed by the U.S. Environmental Protection Agency (130 nM). Moreover, it also has excellent recyclability that provides possibility for practical applications. This study indicates that the sp(2) carbon-conjugated COF can be used for the simultaneous detection and adsorption of UO22+ with good application prospects in environmental applications.
机译:作为核工业中最重要的元素之一,铀均具有放射性和化学毒性,可以在释放到自然环境中危害人类。大多数铀吸附剂难以在强辐射和酸条件下保持良好的稳定性。因此,非常希望开发稳定的吸附剂,用于快速检测和有效地去除铀。在此,我们首先构建了偕胺肟官能化的荧光SP(2)碳连接的共价有机骨架(TP-COF-AO),其富含偕胺肟基团,具有开放的1D通道和非常稳定的框架。基于这些优点,可以在10分钟内将UO22 +从9.25ppm降至10ppb,并且具有高吸附容量(436mg(-1))。同时,UO22 +对TP-COF-AO的吸附导致快速荧光猝灭(在2秒内),具有超低检测限(8.3nm),远低于美国环境规定的饮用水中的最大污染标准保护局(130纳米)。此外,它还具有出色的可再循环性,可提供实际应用的可能性。该研究表明SP(2)碳缀合的COF可用于同时检测和吸附UO22 +,在环境应用中具有良好的应用前景。

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