Adsorption Behaviour and Inhibitory Action of Benzyltriphenylphosphonium Cations at the Dropping Mercury Electrode
Author:
Publisher
Walter de Gruyter GmbH
Subject
Physical and Theoretical Chemistry
Link
https://www.degruyter.com/document/doi/10.1524/zpch.1983.137.2.231/pdf
Reference18 articles.
1. Interfacial behaviour of triphenylphosphine, triphenylarsine and triphenylantimony at the mercury-methanolic solution interface
2. Adsorption of Tri(n)octylphosphine oxide at the mercury electrode from methanol and water-methanolic mixtures
3. Adsorption of triphenylarsine oxide at the mercury electrode from methanol and water-methanolic mixtures
4. Behaviour of triphenyl phosphine oxide at the dropping mercury electrode in methanol
5. Zum Elektrosorptionsverhalten von Diaryl-alkyl-phosphinoxiden: Differentialkapaxitätsmessungen und Elektrokapillarität
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1. Differential capacitance and electrochemical impedance study of surfactant adsorption on polycrystalline Ni electrode;Journal of Solid State Electrochemistry;2015-05-17
2. Retardation of Cd2+and Zn2+ discharge at the dropping mercury electrode by adsorbed phenyl substituted phosphonium cations;Canadian Journal of Chemistry;1988-05-01
3. Effect of surface active cations undergoing interfacial rearrangements on deposition type electrode reactions;Collection of Czechoslovak Chemical Communications;1988
4. Determination of the adsorption film characteristics of alkyltriphenylphosphonium cations from time dependent capacitance measurements;Collection of Czechoslovak Chemical Communications;1987
5. Electrosorption of vinyltriphenyl and propargyltriphenylphosphonium cations from methanolic solutions at the dropping and hanging mercury drop electrodes;Canadian Journal of Chemistry;1986-12-01
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