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Direct Electrical Measurement of the Conversion of Metal Acetates to Metal Sulfides by Hydrogen Sulfide

2006/11/23 by Shabnam Virji, Richard B. Kaner, Bruce H. Weiller · 1 citation
Chemical Engineering · Materials Science · Engineering · #Analytical Chemistry and Sensors #Conducting polymers and applications #Advanced Chemical Sensor Technologies

paper · doi:10.1021/ic0607585

openalex publication_date 2006/11/23 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/22

Abstract

Copper acetate and related metal salt films react directly with hydrogen sulfide at room temperature to form metal sulfides, resulting in conductivity changes as large as 108. The observed changes in conductivity are related to the solubility product constant (Ksp) and the difference in conductivity between the metal salt and the resulting metal sulfide. A smaller Ksp indicates a more stable metal sulfide and, therefore, greater metal salt reactivity. Polyaniline nanofiber/metal salt composites were also examined and show metal sulfide conversion with changes in resistance up to 106. The direct electrical measurement of the conversion of metal salt to metal sulfide has the potential to be the basis of a new type of sensitive, thin-film chemical sensor.

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