Preparation of water-dispersible Janus nanosheets from K 4 Nb 6 O 17 ·3H 2 O and their behaviour as a two-dimensional surfactant on air-water and water-toluene interfaces

K Nb O ·3H O-based Janus nanosheets with water dispersibility and surface activity were prepared sequential regioselective surface modification. To provide individual Janus nanosheets with these two properties, phenylphosphonic acid and phosphoric acid were utilized for surface modification at inter...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2022-03, Vol.51 (9), p.3625-3635
Hauptverfasser: Suzuki, Ryoko, Nagai, Tomoki, Onitsuka, Emika, Idota, Naokazu, Kunitake, Masashi, Nishimi, Taisei, Sugahara, Yoshiyuki
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Sprache:eng
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Zusammenfassung:K Nb O ·3H O-based Janus nanosheets with water dispersibility and surface activity were prepared sequential regioselective surface modification. To provide individual Janus nanosheets with these two properties, phenylphosphonic acid and phosphoric acid were utilized for surface modification at interlayers I and II of K Nb O ·3H O, respectively, and the resulting product was exfoliated into single-layered nanosheets by ultrasonication in water. The resulting aqueous dispersion of the Janus nanosheets showed lower surface tension than pure water, confirming that the Janus nanosheets had surface activity. An o/w emulsion was formed using the Janus nanosheet aqueous dispersion and toluene. In this emulsion, characteristic phenomena, coalescence and Ostwald ripening behaviour of toluene droplets were observed; the appearance of ellipsoidal droplets during coalescence and a rapid Ostwald ripening which differ from those observed for systems using conventional surfactants, were observed. These phenomena likely originated from the unique anisotropic structures of Janus nanosheets with their nm-scale thickness and μm-range lateral size.
ISSN:1477-9226
1477-9234
DOI:10.1039/d1dt03647e