A heterophase method to prepare hollow and/or porous crystalline nanoparticles of metal oxides at room temperature is presented, taking cerium(IV) oxide and ?-iron(III) oxide (i.e., maghemite) as representative cases. The crystallization begins at the oil/water interface in aqueous nanodroplets of the precursor in inverse (water-in-oil) miniemulsion systems and it may continue towards the inner part of the droplets. A poly(styrene-b-acrylic acid) block copolymer is used as a structuring agent, because the ability of the carboxylic groups to bind metal ions improves the inorganic shell formation. A precipitating base is added from the continuous phase, generating hydroxide species at the interface that start the crystallization. We analyze the effects of the synthetic parameters in terms of colloidal stability and morphology of the resulting materials. In the case of maghemite samples, the prepared dispersions of hollow particles present a distinct magnetofluidic behavior.

Crystallization at Nanodroplet Interfaces in Emulsion Systems: A Soft-Template Strategy for Preparing Porous and Hollow Nanoparticles

Gross S;
2016

Abstract

A heterophase method to prepare hollow and/or porous crystalline nanoparticles of metal oxides at room temperature is presented, taking cerium(IV) oxide and ?-iron(III) oxide (i.e., maghemite) as representative cases. The crystallization begins at the oil/water interface in aqueous nanodroplets of the precursor in inverse (water-in-oil) miniemulsion systems and it may continue towards the inner part of the droplets. A poly(styrene-b-acrylic acid) block copolymer is used as a structuring agent, because the ability of the carboxylic groups to bind metal ions improves the inorganic shell formation. A precipitating base is added from the continuous phase, generating hydroxide species at the interface that start the crystallization. We analyze the effects of the synthetic parameters in terms of colloidal stability and morphology of the resulting materials. In the case of maghemite samples, the prepared dispersions of hollow particles present a distinct magnetofluidic behavior.
2016
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
crystallization
miniemulsion
interface
nanoparticles
soft nanoparticles
hollow nanoparticles
cerium
iron
water-in-oil
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/316924
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