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一种用于质子传导和氨阻抗传感的高稳定二维铜(II)有机骨架。

A Highly Stable Two-Dimensional Copper(II) Organic Framework for Proton Conduction and Ammonia Impedance Sensing.

机构信息

College of Chemistry and Molecular Engineering, Zhengzhou University, Zhengzhou, 450001, Henan, P.R. China.

出版信息

Chemistry. 2018 Jul 25;24(42):10829-10839. doi: 10.1002/chem.201801844. Epub 2018 Jun 25.

Abstract

This work reports the design and fabrication of a proton conductive 2D metal-organic framework (MOF), [Cu(p-IPhHIDC)] (1) (p-IPhH IDC=2-(p-N-imidazol-1-yl)-phenyl-1 H-imidazole-4,5-dicarboxylic acid) as an advanced ammonia impedance sensor at room temperature and 68-98 % relative humidity (RH). MOF 1 shows the optimized proton conductivity value of 1.51×10  S cm at 100 °C and 98 % RH. Its temperature-dependent and humidity-dependent proton conduction properties have been explored. The large amount of uncoordinated carboxylate groups between the layers plays a vital role in the resultant conductivity. Distinctly, the fabricated MOF-based sensor displays the required stability toward NH , enhanced sensitivity, and notable selectivity for NH gas. At room temperature and 68 % RH, it gives a remarkable gas response of 8620 % to 130 ppm NH gas and lower detection limit of 2 ppm towards NH gas. It is also found that the gas response of the ammonia sensor increases linearly with the increase of NH gas concentration under 68-98 % RH and room temperature. Moreover, the sensor indicates excellent reversibility and selectivity toward NH versus N , H , O , CO, CO , benzene, and MeOH. Based on structural analyses, activation energy calculations, water and NH vapor absorptions, and PXRD determinations, proton conduction and NH sensing mechanisms are suggested.

摘要

本工作报道了一种质子传导二维金属有机骨架(MOF)[Cu(p-IPhHIDC)](1)(p-IPhHIDC=2-(p-N-咪唑-1-基)-苯基-1H-咪唑-4,5-二羧酸)的设计与制备,其可作为室温下、相对湿度为 68-98%条件下先进的氨阻抗传感器。MOF 1 在 100°C 和 98%RH 下表现出优化的质子电导率值为 1.51×10-2S cm-1。其温度依赖性和湿度依赖性质子传导性能已被探索。层间大量未配位的羧酸根在产生的电导率中起着至关重要的作用。明显的是,所制备的基于 MOF 的传感器对 NH3表现出所需的稳定性、增强的灵敏度和对 NH3气体的显著选择性。在室温下和 68%RH 下,它对 130ppm NH3气体的气体响应达到 8620%,对 NH3气体的检测下限为 2ppm。还发现,在 68-98%RH 和室温下,氨气传感器的气体响应随 NH3气体浓度的增加呈线性增加。此外,该传感器对 NH3与 N2、H2、O2、CO、CO2、苯和 MeOH 表现出优异的可逆性和选择性。基于结构分析、活化能计算、水和 NH3蒸气吸收以及 PXRD 测定,提出了质子传导和 NH3传感机制。

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