Liu Kaikai, Jiang Xiaojing, Song Yuehai, Liang Rongning
School of Environmental and Material Engineering, Yantai University Yantai Shandong 264005 P. R. China
CAS Key Laboratory of Coastal Environmental Processes and Ecological Remediation, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences Yantai Shandong 264003 P. R. China
RSC Adv. 2019 May 29;9(29):16713-16717. doi: 10.1039/c9ra02770j. eCollection 2019 May 24.
Currently, nanomaterial-based all-solid-state ion-selective electrodes (ASS-ISEs) have become attractive tools for ion sensing in environmental and biological applications. However, nanomaterial solid contact can easily fall off the electrode surface owing to poor adhesion. This poses serious limits to the wide use of these sensors. Herein, we report a general and facile method for the robust fabrication of nanomaterial-based ASS-ISEs. It is based on the silver-based conductive adhesive (CA) with excellent electronic conductivity and strong adhesion ability as the binder to construct nanomaterial-based solid contact. The solid-contact Ca-ISE based on single-walled carbon nanotubes (SWCNTs) is chosen as a model. The proposed electrode based on CA-SWCNTs shows a linear response in the concentration range of 10 to 10 M with a slope of 25.96 ± 0.36 mV per decade and a detection limit of 1.7 × 10 M. In addition, the CA-SWCNT-based Ca-ISE exhibits an improved potential stability and reduced water film compared to the coated-wire ISE. Above all, experiments also show that the CA-SWCNT-based electrode exhibits nearly the same electrochemical characteristics as the classical only SWCNT-based electrode in term of resistance, capacitance and potential stability. We believe that CA-nanomaterial-based solid contacts provide an appealing substitute for traditional solid contacts based on nanomaterials.
目前,基于纳米材料的全固态离子选择性电极(ASS - ISEs)已成为环境和生物应用中离子传感的有吸引力的工具。然而,由于附着力差,纳米材料固体接触容易从电极表面脱落。这严重限制了这些传感器的广泛应用。在此,我们报告了一种通用且简便的方法,用于稳健地制造基于纳米材料的ASS - ISEs。它基于具有优异电子导电性和强粘附能力的银基导电粘合剂(CA)作为粘合剂来构建基于纳米材料的固体接触。选择基于单壁碳纳米管(SWCNTs)的固体接触Ca - ISE作为模型。所提出的基于CA - SWCNTs的电极在10至10 M的浓度范围内呈现线性响应,斜率为每十倍浓度变化25.96±0.36 mV,检测限为1.7×10 M。此外,与涂丝ISE相比,基于CA - SWCNT的Ca - ISE表现出更好的电位稳定性并减少了水膜。最重要的是,实验还表明,基于CA - SWCNT的电极在电阻、电容和电位稳定性方面表现出与经典的仅基于SWCNT的电极几乎相同的电化学特性。我们相信,基于CA - 纳米材料的固体接触为基于纳米材料的传统固体接触提供了一种有吸引力的替代品。