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An All-solid-state Polymeric Membrane Ca2+-selective Electrode Based on Hydrophobic Alkyl-chain-functionalized Graphene Oxide

机译:疏水性烷基链官能化氧化石墨烯的全固态高分子膜Ca2 +选择电极

摘要

An all-solid-state polymeric membrane Ca2+-selective electrode based on hydrophobic octadecylamine-functionalized graphene oxide has been developed. The hydrophobic composite in the ion-selective membrane not only acts as a transduction element to improve the potential stability for the all-solid-state Ca2+-selective electrode, but also is used to immobilize Ca2+ ionophore with lipophilic side chains through hydrophobic interactions. The developed all-solid-state Ca2+-selective electrode shows a stable potential response in the linear range of 3.0x10(-7)-1.0x10(-3)M with a slope of 24.7 +/- 0.3mV/dec, and the detection limit is (1.6 +/- 0.2 )x10(-7)M (n=3). Additionally, due to the hydrophobicity and electrical conductivity of the composite, the proposed all-solid-state ion-selective electrode exhibits an improved stability with the absence of water layer between the ion-selective membrane and the underlying glassy carbon electrode. This work provides a simple, efficient and low-cost methodology for developing stable and robust all-solid-state ion-selective electrode with ionophore immobilization.
机译:已经开发了基于疏水十八烷基胺官能化氧化石墨烯的全固态聚合物膜Ca2 +选择电极。离子选择膜中的疏水复合物不仅充当转导元件以提高全固态Ca2 +选择电极的电位稳定性,而且还用于通过疏水相互作用将具有亲脂性侧链的Ca2 +离子载体固定化。已开发的全固态Ca2 +选择电极在3.0x10(-7)-1.0x10(-3)M的线性范围内显示出稳定的电势响应,斜率为24.7 +/- 0.3mV / dec,并且检测极限是(1.6 +/- 0.2)x10(-7)M(n = 3)。另外,由于复合材料的疏水性和导电性,提出的全固态离子选择电极在离子选择膜和下面的玻璃碳电极之间没有水层的情况下表现出改进的稳定性。这项工作提供了一种简单,有效且低成本的方法,用于开发具有离子载体固定功能的稳定,坚固的全固态离子选择电极。

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