荧光
共价键
共价有机骨架
化学
Mercury(编程语言)
固态
合理设计
组合化学
纳米技术
有机化学
材料科学
计算机科学
物理化学
量子力学
物理
程序设计语言
作者
Yanxin Yu,Guoliang Li,Jianghua Liu,Daqiang Yuan
标识
DOI:10.1016/j.cej.2020.126139
摘要
• Allyl cooperated with hydroxy groups fluorescent COF (AH-COF) are signed and synthesized. • Allyl cooperated with hydroxy groups on AH-COF behave as privileged sites for Hg 2+ . • AH-COF shows excellent recycling capacity for both detection and removal of Hg 2+ . Here, by virtue of the natural merits of covalent organic frameworks (COFs), we report the rational design of a novel reaction-based recyclable fluorescent COF for both sensing and removal applications. The design concept is demonstrated by constructing allyl together with hydroxy groups functionalized COF material, AH-COF, for the exclusive detection and effective removal of mercury (II): the densely and well-distributed allyl cooperated with hydroxy groups as the Hg 2+ reaction receptor sites via forming unique mercury-containing product based on the specific mercury-promoted reaction, and the π-conjugation structure as the signal sensor. The satisfactory detection performance of AH-COF was obtained in aspects of excellent uniqueness, high sensitivity, facile visualization, and real-time response. More fascinatingly, AH-COF can be easily recycled in the presence of NaBH 4 . Moreover, the effective Hg 2+ removal from water and the easy recycling of AH-COF provides the potential prospect for actual applications. Furthermore, the solid-state NMR investigations overwhelmingly certified the privileged reaction between Hg 2+ and the allyl in cooperation with hydroxy groups of AH-COF. This study not only shows the use of fluorescent COFs for both exclusive detection and facile removal of Hg 2+ , but also emphasizes a novel design concept for rational structure construction of functionalized COFs for Hg 2+ remediation.
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