首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Facile preparation of well conductive 2D MOF for nonenzymatic detection of hydrogen peroxide: Relationship between electrocatalysis and metal center
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Facile preparation of well conductive 2D MOF for nonenzymatic detection of hydrogen peroxide: Relationship between electrocatalysis and metal center

机译:井导电2D MOF的化妆品用于非酶检测过氧化氢:电常见与金属中心的关系

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摘要

Due to its nano-thickness, fast mass transfer and excellent electron transfer capability, two-dimensional (2D) MOF are an efficient strategy to develop good electrocatalytic materials. In this paper, 2D-MOF were synthesized by facile and cost-efficient methods. MOF can be fast prepared with nucleation and crystal growth in several minutes at room temperature, leading to very thin 2D Co-MOF. Herein, Co, Ni and NiCo-based 2D MOF as non-enzymatic H2O2 sensors at different oxidation potentials in KOH solution, the Co-MOF exhibited excellent H2O2 oxidation and detection performance including a wide linear range from 0.5 mu M to 832.5 mu M, low detection limit of 0.69 mu M, and very fast sensing response in basic solution. By taking advantage of excellent conductivity, the Co-MOF showed the low oxidation potential for H2O2 and good detection performance at 0.25 V. It was comparable to most carbon materials and reported MOF materials for H2O2 detection. We insist that 2D MOF is effective for creating active catalysts. The 2D Co-MOF performed higher electrochemical sensitivity with high stability, conductivity, and selectivity. It indicates 2D MOF has potential employment in the fabrication of sensing devices. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于其纳米厚度,快速传质和优异的电子传递能力,二维(2D)MOF是开发出良好的电催化材料的有效策略。在本文中,通过容易和成本效益的方法合成了2D-MOF。 MOF可以在室温下在几分钟内进行成核和晶体生长快速制备,导致非常薄的2D CO-MOF。在本文中,CO,Ni和Nico的2D MOF作为在KOH溶液中不同氧化电位的非酶促H2O2传感器,CO-MOF表现出优异的H 2 O 2氧化和检测性能,包括0.5μm至832.5μm的宽线性范围,低检测限为0.69 mu m,以及基本解决方案中非常快速的感应响应。通过优异的电导率,CO-MOF显示H2O2的低氧化电位,并且在0.25V时良好的检测性能。它与大多数碳材料和报告的H2O2检测MOF材料相当。我们坚持认为,2D MOF对于创造活性催化剂是有效的。 2D CO-MOF以高稳定性,导电性和选择性进行了更高的电化学灵敏度。它表示2D MOF在制造传感装置中具有潜在的就业。 (c)2019 Elsevier B.v.保留所有权利。

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