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喷墨打印硫化物选择性电极。

Inkjet-Printed Sulfide-Selective Electrode.

机构信息

Departament of Chemistry, Faculty of Science, Universitat Autònoma de Barcelona , Edifici C-Nord, Carrer dels Til·lers, 08193 Bellaterra (Cerdanyola del Vallès), Barcelona, Spain.

Instituto de Microelectrónica de Barcelona, IMB-CNM (CSIC), Esfera UAB, Campus Universitat Autònoma de Barcelona , 08193 Bellaterra (Cerdanyola del Vallès), Barcelona, Spain.

出版信息

Anal Chem. 2017 Nov 21;89(22):12231-12236. doi: 10.1021/acs.analchem.7b03041. Epub 2017 Nov 10.

Abstract

Inkjet printing technology has emerged as an alternative manufacturing method for low-cost production of electrodes. Despite significant progress, there is still a lack in the production of ion-selective electrodes. Herein, the two-step fabrication of the first inkjet-printed sulfide-selective electrode (IPSSE) is described. The two-step fabrication consists of printing a silver electrode followed by an electrochemical deposition of sulfide to produce a second kind electrode (Ag/AgS). The performance of this novel device was tested using potentiometric measurements. Nernstian response (-29.4 ± 0.3 mV·decade) was obtained within concentrations of 0.03-50 mM with a response time of ∼3 s. Furthermore, river/sea-spiked environmental samples and samples from a bioreactor for sulfate reduction to sulfide were measured and compared against a commercial sensor giving no significant differences. The IPSSE described in this work showed good reproducibility and durability during daily measurements over 15 days without any special storage conditions. Considering all the current challenges in inkjet-printed ion-selective electrodes, this different fabrication approach opens a new perspective for mass production of all-solid state ion-selective electrodes.

摘要

喷墨打印技术已成为低成本电极生产的替代制造方法。尽管已经取得了重大进展,但在离子选择性电极的生产方面仍存在不足。本文描述了两步法制备第一支喷墨打印硫化物选择性电极(IPSSE)。两步法制备包括打印银电极,然后进行硫化物的电化学沉积,以生成第二种电极(Ag/AgS)。使用电位测量对这种新型器件的性能进行了测试。在 0.03-50 mM 的浓度范围内获得了 Nernstian 响应(-29.4 ± 0.3 mV·decade),响应时间约为 3 s。此外,还对来自河流/海洋的加标环境样品和用于硫酸盐还原为硫化物的生物反应器样品进行了测量,并与商业传感器进行了比较,没有发现显著差异。在没有任何特殊存储条件的情况下,这项工作中描述的 IPSSE 在 15 天的日常测量中表现出良好的重现性和耐用性。考虑到当前喷墨打印离子选择性电极所面临的所有挑战,这种不同的制造方法为全固态离子选择性电极的大规模生产开辟了新的视角。

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