参比电极
化学
电极
水溶液
电解质
循环伏安法
标准电极电位
电化学
标准氢电极
分析化学(期刊)
电极电位
氧化还原
氢
氯化物
电化学电位
伏安法
电化学窗口
开路电压
标准溶液
无机化学
工作(物理)
阶跃势薛定谔方程的解
可逆氢电极
绝对电极电位
阳极溶出伏安法
阴极
支撑电解质
电化学电池
工作电极
阳极
氯化氢
参考数据
微电极
光电子学
极地的
作者
Vijay Vaiyadurai,Shrihari Sankarasubramanian
标识
DOI:10.1021/acs.analchem.5c06004
摘要
Reliable reference electrodes (REs) are essential for accurate electrochemical measurements in extreme environments, including space missions, polar regions, and cryogenic systems. The electrolyte in conventional aqueous reference electrodes typically freeze under these conditions, rendering them unusable. To address this gap, we report on the development and validation of a custom Ag/AgCl | 5.49 M LiCl reference electrode designed to operate between -40 °C (233 K) and +80 °C (353 K). This reference electrode demonstrated stable and reproducible performance during cyclic voltammetry of the ferrocyanide/ferricyanide [Fe (CN)6 ]3-/4- redox couple across the full temperature range. The reference potential of this RE was established through Nernstian calculations and measurements against the reversible hydrogen electrode (RHE), including liquid junction potential correction, and showed remarkable agreement between theoretical (0.155 V vs standard hydrogen electrode, SHE) and experimental (0.152 V vs SHE) values. The pH-dependent open circuit potential (OCP) measurements showed an ideal Nernstian response of ∼60 mV/pH. This work introduces the Ag/AgCl | 5.49 M LiCl system as a new reference electrode standard for electrochemical applications in space missions to water worlds - including the Moon, Mars, Europa, Enceladus, and other ocean worlds, as well as in cryogenic systems and harsh terrestrial environments where conventional systems fail.
科研通智能强力驱动
Strongly Powered by AbleSci AI