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Cu2+-BTC based metal-organic framework: a redox accessible and redox stable MOF for selective and sensitive electrochemical sensing of acetaminophen and dopamine

机译:基于CU2 + -BTC的金属有机框架:用于乙酰氨基酚和多巴胺的选择性和敏感电化学传感的氧化还原和氧化还原稳定的MOF

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摘要

A Cu2+ plus benzenetricarboxylate (BTC) based '3D' metal-organic framework HKUST-1 was synthesized via a facile microwave assisted route. The structure and morphology of the framework were characterized by XRD, FTIR, SEM, and TEM and its thermal stability tested with TGA. The thermal studies reveal the stability of the framework up to 300 degrees C with the collapsing of the material in the temperature range of 300-400 degrees C. The kinetics of decomposition reveals that the HKUST-1 decomposition follows first order kinetics with the energy of activation 198.01 kJ mol(-1). The redox stability and accessibility of the MOF were explored via voltammetric investigations carried out with a HKUST-1 modified glassy carbon electrode (HKUST-1/GCE). HKUST-1/GCE was also tested for its potential towards electrochemical sensing of acetaminophen (AC) and dopamine (DA) wherein the analytes were observed to result in concentration dependent faradaic signals appreciably separated over the voltammetric scale. Linear correlations were found between the oxidation peaks and the concentrations of acetaminophen and dopamine, in the concentration ranges of 12.5-375 mu M and 12.5-175 mu M, respectively. HKUST-1/GCE was observed to exhibit excellent stability, reproducibility and detection limits as low as 0.092 nM and 0.11 nM for AC and DA, respectively. The presented results clearly establish the redox stability, redox accessibility and suitability of HKUST-1 as a potential electrode material for sensitive electrochemical sensing of AC and DA.
机译:通过容易的微波辅助途径合成Cu2 +加苯甲酸甲酯(BTC)的“3D”金属有机框架HKust-1。框架的结构和形态由XRD,FTIR,SEM和TEM以及TGA测试的热稳定性。热研究揭示了框架的稳定性高达300℃的稳定性,在300-400℃的温度范围内的材料塌陷。分解动力学显示HKust-1分解遵循具有能量的第一阶动力学激活198.01 kJ mol(-1)。通过用HKUST-1改性玻碳电极(HKUST-1 / GCE)进行的伏安调查探索MOF的氧化还原稳定性和可达性。还测试了HKUST-1 / GCE的抗乙酰氨基酚(AC)和多巴胺(DA)的电化学传感,其中观察到导致浓度依赖性竞争信号在伏安标记上显着分离。在氧化峰和乙酰氨基酚和多巴胺的浓度之间发现线性相关性分别在12.5-375μm和12.5-175μm的浓度范围内。观察HKUST-1 / GCE分别表现出优异的稳定性,再现性和检测限,分别为0.092nm和0.11nm的AC和DA。所提出的结果清楚地确定了HKUST-1的氧化还原稳定性,氧化还原可访问性和适用性,作为用于AC和DA的敏感电化学传感的潜在电极材料。

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