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首页> 外文期刊>Journal of Solid State Chemistry >A pillar-layer metal-organic framework as a turn-on luminescent sensor for highly selective and sensitive detection of Zn(II) ion
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A pillar-layer metal-organic framework as a turn-on luminescent sensor for highly selective and sensitive detection of Zn(II) ion

机译:柱层金属有机框架作为导通发光传感器,用于Zn(II)离子的高选择性和敏感检测

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The intriguing architectures of metal-organic frameworks (MOFs), makes them an emerging class of promising materials in various application fields ranging from gas adsorption to sensing. In the present work, a three-dimensional Zn-based MOF, Zn-2(BDC)(2)(DABCO), (H2BDC = 1,4-benzene dicarboxylic acid, DABCO = 1,4-diazabicyclo[2.2.2]octane) was prepared and its sensing behavior to metal ions was investigated by fluorescence assays. Our results show that the luminescence intensity of Zn-2(BDC)(2)(DABCO) is strongly sensitive to Zn2+ ions. The effects of selectivity, initial concentration, the limit of detection, response time and regeneration were studied in the case of Zn2+ detection operations. The linear response to Zn2+ was obtained across the concentration range of 50-200 mu M with the detection limit of 0.7 mu M. The sensor also displayed excellent performance in selectivity for Zn2+ over other metal ions including Fe3+, MN2+, CU2+, AS(3+), Ni2+, Pb2+, CO2+, Al3+ and Cd2+ ions. The luminescence enhancement and recovery cycle were reiterated multiple times without much effect on the sensitivity. All the above features showed that this sensor as a sensing platform holds great potential for detection of Zn2+ with a response time of <1 min that has been rarely reported.
机译:金属有机框架(MOFS)的有趣架构,使它们成为各种施用领域的新出现类,该等应用领域从气体吸附到感应。在本作工作中,三维Zn基MOF,Zn-2(BDC)(2)(DABCO)(DABCO)(H2BDC = 1,4-苯二羧酸,Dabco = 1,4-Diazabicclo [2.2.2]制备辛烷值)并通过荧光测定研究其对金属离子的感测行为。我们的结果表明,Zn-2(BDC)(2)(2)(DABCO)的发光强度对Zn2 +离子强烈敏感。在ZN2 +检测操作的情况下,研究了选择性,初始浓度,检测,响应时间和再生限度的影响。在50-200μm的浓度范围内获得对Zn2 +的线性响应,检测限为0.7μm。传感器在其他金属离子上的选择性方面也显示出优异的性能,包括Fe3 +,Mn2 +,Cu2 +,如(3 +),Ni2 +,Pb2 +,CO 2 +,Al3 +和CD2 +离子。发光增强和恢复周期重复多次,对敏感性很大。所有上述功能表明,该传感器作为传感平台具有较大的Zn2 +的响应潜力,其响应时间是很少报道的<1分钟。

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