Silver Chloride

Silver chloride (AgCl) is a sparingly soluble, light-sensitive ionic compound that forms a white precipitate and serves as an important model for solubility and precipitation chemistry. In aqueous solution, silver ions and chloride ions establish a dissolution–precipitation equilibrium described by the solubility product constant; exposure to light can reduce Ag(I) to metallic silver, causing the solid to darken. In chemistry, silver chloride supports qualitative analysis of halide ions, gravimetric and equilibrium studies, and the operation of silver/silver chloride reference electrodes. Its predictable behavior helps researchers relate ionic reactions to analytical measurements and electrochemical control.

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Research

JoVE Journal - Chemistry

Fabrication of Thin Film Silver/Silver Chloride Electrodes with Finely Controlled Single Layer Silver Chloride

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Cited by 2 •

2020

This paper aims to present a method to form smooth and well-controlled films of silver chloride (AgCl) with designated coverage on top of thin film silver electrodes.

Dynamic Electrochemical Measurement of Chloride Ions

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Cited by 5 •

2016

Dynamic measurement of chloride ions is presented. Transition time of an Ag/AgCl electrode, during a chronopotentiometric technique, can give the concentration of chloride ions in electrolyte. This method does not require a stable conventional reference electrode.

Detecting the Water-soluble Chloride Distribution of Cement Paste in a High-precision Way

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Cited by 3 •

2017

A protocol for obtaining a water-soluble chloride profile by using a high precision milling method is presented.

Silver Staining to Visualize Neuritic Plaques in an Alzheimer's Diseased Brain Section

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2025

To visualize these NPs, take a deparaffinized, fixed human brain section.

Gold Nanostar Synthesis with a Silver Seed Mediated Growth Method

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Cited by 28 •

2012

We synthesized star shaped gold nanostars using a silver seed mediated growth method. The diameter of the nanostars ranges from 200 to 300 nm and the number of tips vary from 7 to 10. The nanoparticles have a broad surface plasmon resonance mode centered in the near infrared.

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