Published January 1, 2014 | Version v1
Journal article

Pickering emulsion: A novel template for microencapsulated phase change materials with polymer–silica hybrid shell

Description

MePCMs (microencapsulated phase change materials) with covalently bonded SiO2/polymer hybrid as shell were fabricated via Pickering emulsion polymerization stabilized solely by organically-modified SiO2 particles. Morphology and core–shell structure of these microcapsules were observed by scanning electron microscopy (SEM). Thermal properties of microencapsulated 1-dodecanol were determined using DSC (differential scanning calorimetry) and TGA (thermal gravimetric analysis). The results indicate that mass ratio of St (styrene)/DVB (divinylbenzene)/dodecanol has great effect on the morphology, inner structure, microencapsulation efficiency and durability of resultant MePCMs. When ratio of St/DVB/dodecanol was 5/1/12, dodecanol content of as much as 62.8% is obtained and the utility efficiency of dodecanol reaches 94.2%. The prepared MePCMs present good durability and thermal reliability. 2.2% of core material leached away the microcapsule after suspended in water for 10 days and 5.8% of core material leached after 2000 accelerated thermal cycling. Our study demonstrated that Pickering emulsion polymerization is a simple and robust method for the preparation of MePCMs with polymer–inorganic hybrids as shell. - Highlights: • We fabricated MePCM via surfactant-free Pickering emulsion polymerization. • The shell of MePCM was composed of PS/SiO2 organic–inorganic hybrids. • The phase change enthalpy of MePCM is 125.0 J g−1 and the utility efficiency of 1-dodecanol reached 94.2%. • Only 2.2% and 5.8% of core material lost after durability test and 2000 accelerated thermal cycling respectively

Availability note (English)

Available from http://dx.doi.org/10.1016/j.energy.2013.10.004

Additional details

Identifiers

DOI
10.1016/j.energy.2013.10.004;
PII
S0360-5442(13)00835-9;

Publishing Information

Journal Title
Energy (Oxford)
Journal Volume
64
Journal Page Range
p. 575-581
ISSN
0360-5442
CODEN
ENEYDS

Optional Information

Copyright
Copyright (c) 2013 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.