The response time of thermal electrolytic Ag/AgCl reference electrodes is defined by the porous structure that limits the rate at which traces of any previous solution are diluted by any new solution environment. The electrode stabilisation time when transferred from one electrolyte to another has been shown to change when different structural designs to the conventional sphere of Ag/AgCl are used. Electrodes fabricated with cylindrical architectures of Ag/AgCl have shown improved stability and reach equilibrium faster than spherical electrodes. This work has positive implications for the accuracy and throughput of primary pH measurements made using the Harned cell
Different types of Ag/AgCl reference electrodes have been realised by means of thin- and thick-film ...
This article discusses several factors that affect the reference potential established by silver/sil...
One of the reported problems associated with the performance of Ag/AgCl electrodes in alkaline envir...
Potentiometric cells from which the pH values of standard buffer solutions are computed rely on the ...
We have studied the long and short term stability of electrolytic Ag/AgCl electrodes fabricated from...
Thick-film screen printed silver-silver chloride (Ag/AgCl) reference electrodes have been fabricated...
In this work, a solid-state Ag/AgCl electrode was successfully fabricated via electrodeposition of s...
The fabrication of prototype thick film silver-silver chloride electrochemical reference electrodes ...
This paper presents an alternative strategy for manufacturing solid-state reference electrodes based...
The purpose of this work 1s to fabricate and characterize Ag/AgCl electrodes made on a s&con chi...
This protocol describes the dynamic measurement of chloride ions using the transition time of a silv...
[[abstract]]To miniaturize the size of conventional reference electrode and achieve the requirement ...
In this work, an innovative method was utilized to determine the AgCl(1% mol)/Ag reference electrode...
Purpose – The purpose of this paper is to show how the fabrication parameters of screen-printed thic...
Potentiometry provides a simple but powerful platform technology to determine the concentration of s...
Different types of Ag/AgCl reference electrodes have been realised by means of thin- and thick-film ...
This article discusses several factors that affect the reference potential established by silver/sil...
One of the reported problems associated with the performance of Ag/AgCl electrodes in alkaline envir...
Potentiometric cells from which the pH values of standard buffer solutions are computed rely on the ...
We have studied the long and short term stability of electrolytic Ag/AgCl electrodes fabricated from...
Thick-film screen printed silver-silver chloride (Ag/AgCl) reference electrodes have been fabricated...
In this work, a solid-state Ag/AgCl electrode was successfully fabricated via electrodeposition of s...
The fabrication of prototype thick film silver-silver chloride electrochemical reference electrodes ...
This paper presents an alternative strategy for manufacturing solid-state reference electrodes based...
The purpose of this work 1s to fabricate and characterize Ag/AgCl electrodes made on a s&con chi...
This protocol describes the dynamic measurement of chloride ions using the transition time of a silv...
[[abstract]]To miniaturize the size of conventional reference electrode and achieve the requirement ...
In this work, an innovative method was utilized to determine the AgCl(1% mol)/Ag reference electrode...
Purpose – The purpose of this paper is to show how the fabrication parameters of screen-printed thic...
Potentiometry provides a simple but powerful platform technology to determine the concentration of s...
Different types of Ag/AgCl reference electrodes have been realised by means of thin- and thick-film ...
This article discusses several factors that affect the reference potential established by silver/sil...
One of the reported problems associated with the performance of Ag/AgCl electrodes in alkaline envir...