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Laux‐type Oxidation of In0 Nanoparticles to In2O3 Retaining Particle Size and Colloidal Stability
Authors:Elin Hammarberg  Claus Feldmann
Institution:Institut für Anorganische Chemie, Karlsruhe Institute of Technology (KIT), Engesserstra?e 15, 76131 Karlsruhe, Germany
Abstract:As a conceptual study, In0 nanoparticles are obtained by NaBH4‐driven reduction of InCl3 · 4H2O and transferred from a polar/hydrophilic diethylene glycol phase to a non‐polar hydrophobic dodecane phase for purification and stabilization. Finally, the In0 nanoparticles are oxidized via a Laux‐like reaction with nitrobenzene to In2O3 nanoparticles. The challenge of the reaction is to perform the final oxidation to In2O3 under mild conditions with the colloidal stability, particle size and particle size distribution of the initial In0 nanoparticles retained. To this concern, the mean diameter of the initial In0 nanoparticles changed from 11(1) to 14(2) nm of the oxidized In2O3 nanoparticles. Such multi‐step reaction, including reduction, nucleation, phase transfer, exchange of surface capping and oxidation are of increasing importance for nanoparticles. Especially, Laux‐type conditions with nitrobenzene as a molecular oxidizing agent of nanoparticles have not been used till now. Particle size, size distribution and chemical composition of the In0 and In2O3 nanoparticles are analyzed by DLS, SEM, XRD, FT‐IR and HRTEM.
Keywords:Indium  Indium oxide  Nanoparticles  Phase transfer  Laux‐type oxidation  Nitrobenzene
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