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- W2105018520 abstract "In a previous study it was observed that adsorption of chlorpromazine at the air-solution interface is influenced significantly by anionic buffer components. In view of this, the effect of a large number of inorganic and organic ions has been considered. Marked inhibitory effects were noted in the presence of organic cations e.g., the tetraalkylammonium ions; the greater the chain length, the greater the inhibition. Inhibition was also noted in the presence of sodium methanesulfonate. On the other hand, bromide, iodide, propanesulfonate, benzenesulfonate, and naphthalenesulfonate ions all produced increased surface activity when compared to the system containing NaCl. The inhibitory effects appear related to factors influencing the structure of water, while the effect of anions appears due to interfacial ion-pair formation. In a previous study it was observed that adsorption of chlorpromazine at the air-solution interface is influenced significantly by anionic buffer components. In view of this, the effect of a large number of inorganic and organic ions has been considered. Marked inhibitory effects were noted in the presence of organic cations e.g., the tetraalkylammonium ions; the greater the chain length, the greater the inhibition. Inhibition was also noted in the presence of sodium methanesulfonate. On the other hand, bromide, iodide, propanesulfonate, benzenesulfonate, and naphthalenesulfonate ions all produced increased surface activity when compared to the system containing NaCl. The inhibitory effects appear related to factors influencing the structure of water, while the effect of anions appears due to interfacial ion-pair formation." @default.
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- W2105018520 date "1966-12-01" @default.
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- W2105018520 title "Factors Influencing the Surface Activity of Chlorpromazine at the Air-Solution Interface Effect of Inorganic and Organic Electrolytes" @default.
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- W2105018520 doi "https://doi.org/10.1002/jps.2600551203" @default.
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