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首页> 外文期刊>Journal of Colloid and Interface Science >A new three-dimensional zinc-based metal-organic framework as a fluorescent sensor for detection of cadmium ion and nitrobenzene
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A new three-dimensional zinc-based metal-organic framework as a fluorescent sensor for detection of cadmium ion and nitrobenzene

机译:一种新的三维锌基金属框架作为用于检测镉离子和硝基苯的荧光传感器

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In this study, a novel three-dimensional zinc-based metal-organic framework (Zn-MOF), i.e., {Zn-2(L)(2)(DMF)(2)H2O}(n) (L = 2,5-bis(phenylamino)-1,4-benzenedicarboxylic acid) was designed and developed under solvothermal condition. As a proof-of-principle, a pi-conjugated framework of carboxylate ligand capable of "bottom up" synthesis was integrated with metal ion to construct a novel MOF for sensing applications. As expected, the synthesized Zn-MOF exhibited fluorescence enhancement for cadmium ion (Cd2+) and sensing of nitrobenzene (NB) through fluorescence quenching. The detection limits were calculated to be 0.12 mu M for Cd2+ and 1.19 mu g mL(-1) for NB based on signal-to-noise ratio of 3:1. Moreover, various techniques and density functional theory investigations verified that the possible sensing mechanisms for Cd2+ and NB included ion exchange and photoinduced electron transfer, respectively. Finally, their practical applications on real samples also demonstrated that the Zn-MOF-based sensor can be effectively utilized for detection and imaging of Cd2+ present in the real water samples and living cells. This study may inspire future research and design of target fluorescent MOFs with specific functions. (C) 2017 Elsevier Inc. All rights reserved.
机译:在这项研究中,一种新型的三维锌系金属 - 有机骨架(Zn的MOF),即,{Zn的2(L)(2)(DMF)(2)H 2 O}(n)的(L = 2, 3,5-双(苯基氨基)-1,4-苯二羧酸)的设计和溶剂热条件下显影。作为验证的原理,羧酸配体能够“自底向上”的合成π共轭框架用金属离子结合,构建了一个新的MOF用于感测应用。正如预期的那样,合成的Zn-MOF显示出用于通过荧光猝灭镉离子(Cd2 +的)和硝基苯(NB)的感测的荧光增强。检测极限分别计算为0.12微米为Cd2 +和1.19亩克毫升(-1)NB基于3信噪比:1。此外,各种技术和密度泛函理论的研究证实,对于Cd2 +和NB的可能感测机构包括分别离子交换和光诱导电子转移,。最后,它们对实际样品的实际应用还表明,Zn基MOF-传感器可被有效地用于检测和成像的镉+存在的实际水样和活细胞。这项研究可能激发未来的研究和具有特定功能的靶荧光MOFs材料的设计。 (c)2017年Elsevier Inc.保留所有权利。

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