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首页> 外文期刊>RSC Advances >Construction of a flexible covalent organic framework based on triazine units with interesting photoluminescent properties for sensitive and selective detection of picric acid
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Construction of a flexible covalent organic framework based on triazine units with interesting photoluminescent properties for sensitive and selective detection of picric acid

机译:基于三嗪单元的柔性共价有机骨架的构建,具有有趣的光致发光性能,用于敏感和选择性检测Picric acid

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Highly emissive two-dimensional (2D) covalent organic frameworks (COFs) have rarely been reported due to the challenge of inhibiting the aggregation-caused quenching (ACQ) caused by pi-pi stacking between layers. To address this issue, the use of flexible building units is a promising strategy. However, currently reported flexible 2D COFs generally exhibit poor crystallinity, low surface area, etc. and the mechanism of the excellent fluorescence performance for the flexible 2D COFs still needs to be further explored. In this article, a novel flexible 2D COF (DTZ-COF) was synthesized using two pi-electron deficient triazine monomers rather than the commonly used one pi-electron rich fused aromatic ring under solvothermal conditions. Fortunately, DTZ-COF exhibits excellent crystallinity and high surface area (1276.5131 m(2) g(-1) and 2087.5502 m(2) g(-1) for Brunauer-Emmett-Teller (BET) and Langmuir surface area, respectively), which are rarely observed in previously reported flexible 2D COFs. The increased Lewis basic sites endow DTZ-COF with certain advantages in the separation of CO2 and N-2. The comparison between flexible DTZ-COF and a non-flexible 2D COF (TPT-TPT-COF) with a similar framework suggests that the introduction of flexible building units can indeed improve the photoluminescence (PL) efficiency. The pi-electron deficient DTZ-COF has excellent fluorescence performance and exhibits unique solvent responsiveness, such as fluorescence enhancement in aromatic solvents, and fluorescence quenching in alcohol and water. As a chemical sensor for detection of picric acid (2,4,6-trinitrophenol, TNP), the efficient fluorescence quenching involving both static and dynamic behaviors ensures high selectivity and sensitivity (ppb level).
机译:由于抑制由层之间的PI-PI堆叠引起的聚集导致的淬火(ACQ)挑战,高发光二维(2D)共价有机框架(COF)很少报道。为解决这个问题,使用灵活的建筑单位是一个有希望的策略。然而,目前报道的柔性2D COF通常表现出差的结晶度,低表面积等,并且仍然需要进一步探索柔性2D COF的优异荧光性能的机理。在本文中,使用两种PI-电子三嗪单体合成一种新型柔性2D COF(DTZ-COF),而不是在溶剂热条件下常用的一种PI-Electron富含芳香环。幸运的是,DTZ-COF分别表现出优异的结晶度和高表面积(1276.5131米(2)G(-1)和2087.5502 m(2)G(-1)分别用于Brunauer-Emmett-experer(Bet)和Langmuir表面积) ,在先前报道的灵活2D COF中很少观察到。刘易斯碱基出位增加了DTZ-COF,在CO 2和N-2的分离中具有某些优点。具有类似框架的柔性DTZ-COF和非柔性2D COF(TPT-TPT-COF)之间的比较表明,柔性构建单元的引入可以改善光致发光(PL)效率。 PI-电子缺乏DTZ-COF具有优异的荧光性能,并且在芳族溶剂中表现出独特的溶剂反应性,例如芳族溶剂,以及醇和水中的荧光猝灭。作为用于检测麦酸的化学传感器(2,4,6-三苯酚,TNP),涉及静态和动态行为的有效荧光猝灭可确保高选择性和灵敏度(PPB水平)。

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    《RSC Advances 》 |2019年第53期| 共6页
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  • 正文语种 eng
  • 中图分类 化学 ;
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