Palm olein-in-water Pickering emulsion stabilized by FeO-cellulose nanocrystal nanocomposites and their responses to pH.

Carbohydr Polym

Chemical Engineering Discipline, School of Engineering, Monash University Malaysia, Jalan Lagoon Selatan, Bandar Sunway, 47500 Subang Jaya, Selangor, Malaysia. Electronic address:

Published: January 2017

AI Article Synopsis

  • - We investigated how palm olein-in-water Pickering emulsions can be stabilized using FeO-cellulose nanocrystals (MCNC) created through a special ultrasound method, revealing their effectiveness in maintaining emulsion stability under certain conditions.
  • - The stability of these emulsions shows a strong relationship with pH levels, remaining stable at pH 3-6, but becoming unstable at higher pH, while unique droplet sizes appeared according to the pH conditions.
  • - The findings suggest that these MCNC-stabilized Pickering emulsions, especially those formed at pH 6, could be promising for applications in biomedical fields, such as drug delivery systems.

Article Abstract

We studied the formation of palm olein-in-water (O/W) Pickering emulsion stabilized by FeO-cellulose nanocrystals (MCNC) nanocomposites obtained by ultrasound assisted in-situ co-precipitation method. The synthesized MCNC nanocomposites successfully stabilized Pickering emulsion with dual responses. The magnetic tests revealed a direct-relation between attractability of MCNC-stabilized Pickering emulsions and the emulsion droplet diameter. The Pickering emulsions were stable under pH ranging from 3 to 6. The stability substantially reduced around pH 8-10, and regained slowly when approaching pH 13. From microscopic and mastersizer analysis, monodisperse emulsion droplets were noticed at pH 3-6, and 13, while polydisperse emulsion were obtained at pH 8-12. The Pickering emulsions prepared at pH 6 are stable up to 14 days, while Pickering emulsions at pH 8 experienced coalescence. In this study, the dual stimuli-responsive Pickering emulsion stabilized by MCNC may hold potentials for biomedical and drug delivery as new generation of smart nanotherapeutic carrier.

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Source
http://dx.doi.org/10.1016/j.carbpol.2016.08.091DOI Listing

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