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Ion-selective electrodes with three-dimensionally ordered macroporous carbon as the solid contact

机译:三维有序大孔碳作为固体触点的离子选择电极

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摘要

Electrodes with three-dimensionally ordered macroporous (3DOM) carbon as the intermediate layer between an ionophore-doped solvent polymeric membrane and a metal contact are presented as a novel approach to solid-contact ion-selective electrodes (SC-ISEs). Due to the well-interconnected pore and wall structure of 3DOM carbon, filling of the 3DOM pores with an electrolyte solution results in a nanostructured material that exhibits high ionic and electric conductivity. The long-term drift of freshly prepared SC-ISEs with 3DOM carbon contacts is only 11.7 mu V/h, and does not increase when in contact with solution for 1 month, making this the most stable SC-ISE reported so far. The electrodes show good resistance to the interference from oxygen. Moreover, in contrast to previously reported SC-ISEs with conducting polymers as the intermediate layer, 3DOM carbon is an electron conductor rather than a semiconductor, eliminating any light interference.
机译:作为固体接触离子选择电极(SC-ISE)的一种新方法,提出了具有三维有序大孔(3DOM)碳作为离子载体掺杂的溶剂聚合物膜和金属触点之间的中间层的电极。由于3DOM碳的孔和壁结构相互连接良好,因此用电解质溶液填充3DOM孔会产生具有高离子和导电性的纳米结构材料。新鲜制备的具有3DOM碳触点的SC-ISE的长期漂移仅为11.7μV/ h,并且与溶液接触1个月时不会增加,这是迄今为止报道的最稳定的SC-ISE。电极显示出良好的抗氧干扰能力。此外,与先前报道的以导电聚合物作为中间层的SC-ISE相比,3DOM碳是电子导体,而不是半导体,从而消除了任何光干扰。

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