DTIC ADA263421: In Situ Fourier Transform Infrared Spectroscopic Study Of Bisulfate And Sulfate Adsorption On Gold, With And Without The Underpotential Deposition Of Copper - Info and Reading Options
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"DTIC ADA263421: In Situ Fourier Transform Infrared Spectroscopic Study Of Bisulfate And Sulfate Adsorption On Gold, With And Without The Underpotential Deposition Of Copper" and the language of the book is English.
“DTIC ADA263421: In Situ Fourier Transform Infrared Spectroscopic Study Of Bisulfate And Sulfate Adsorption On Gold, With And Without The Underpotential Deposition Of Copper” Metadata:
- Title: ➤ DTIC ADA263421: In Situ Fourier Transform Infrared Spectroscopic Study Of Bisulfate And Sulfate Adsorption On Gold, With And Without The Underpotential Deposition Of Copper
- Author: ➤ Defense Technical Information Center
- Language: English
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- Internet Archive ID: DTIC_ADA263421
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"DTIC ADA263421: In Situ Fourier Transform Infrared Spectroscopic Study Of Bisulfate And Sulfate Adsorption On Gold, With And Without The Underpotential Deposition Of Copper" Description:
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In situ surface infrared (IR) spectroelectrochemistry is used to investigate the adsorption of sulfate (SO4(2-)) and bisulfate (HSO(4-)) ions on polycrystalline gold surfaces in sodium sulfate and sulfuric acid, and also during copper underpotential deposition in sulfuric acid medium. In sodium sulfate solution, IR peaks due to surface sulfate and bisulfate are observed at potentials within the double-layer region on gold, and the ratio of IR peak intensities for sulfate to bisulfate increases as the applied potential is made more negative. In sulfuric acid, surface IR spectra indicate that adsorbed sulfate is favored at more positive potentials, while adsorbed bisulfate is prevalent at more negative voltages; also, a potential-dependent reorientation of water is observed in the spectra. IR spectroelectrochemical data from a sulfuric acid system containing copper sulfate indicate that adsorbed sulfate is present on gold at more positive potentials, and its coverage increases when underpotentially deposited (UPD) copper is present on the gold substrate surface.
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