Title of article
Preparation of Janus colloidal particles via Pickering emulsion: An overview
Author/Authors
Kaewsaneha، نويسنده , , Chariya and Tangboriboonrat، نويسنده , , Pramuan and Polpanich، نويسنده , , Duangporn and Eissa، نويسنده , , Mohamed and Elaissari، نويسنده , , Abdelhamid، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
8
From page
35
To page
42
Abstract
Janus colloidal particles (JCPs), compartmentalized colloids with two sides of different chemistry or polarity, have attracted significant attention in recent years due to their novel morphologies and diverse potential applications in materials science, biomedicine and in the field of highly specific biosensors. Due to these fascinating features, the synthesis of Janus particles remains a big challenge. However, major progress concerning their preparation in useful amounts has been achieved in recent years. Among the used synthetic approaches, Pickering emulsion, bearing solid nanoparticles at the interface between two liquid phases as the stabilizing agent, is one of the elegant methods used for the synthesis of Janus colloidal particles with controllable morphology in a wide range of size and surface functionality. A monolayer of organic and inorganic nanoparticles can stabilize an emulsion droplet only when their hemispherical surface is chemically modified, while the remaining surface is protected. This approach offers the possibility to alter the surface of nanoparticles with a variety of functional groups which lead to Janus particles with complex structure.
s review article, we represent an overview on the state of the art for producing Janus colloidal particles based on Pickering emulsion strategy. The pioneer and recent respective works of Janus colloidal particles with anisotropic in surface and/or in structure were also described.
Keywords
Janus particles , morphology control , Pickering emulsion , Surface functionality , Synthesis
Journal title
Colloids and Surfaces A Physicochemical and Engineering Aspects
Serial Year
2013
Journal title
Colloids and Surfaces A Physicochemical and Engineering Aspects
Record number
1944940
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