A Copolymer of Monomethoxy Poly(ethylene glycol)‐Polycaprolactone as Form‐Stable Phase Change Materials for Thermal Energy Storage

Author:

Ong Pin Jin1ORCID,Lee Hui Yi Shuko1,Yeo Jayven Chee Chuan1,Li Zibiao123,Lee Johnathan Joo Cheng1,Wang Suxi1,Yin Xuesong1,Wang Pei1,Xu Jianwei124,Loh Xian Jun123,Muiruri Joseph Kinyanjui2,Zhu Qiang125ORCID

Affiliation:

1. Institute of Materials Research and Engineering (IMRE) Agency for Science Technology and Research (A*STAR) 2 Fusionopolis Way, Innovis #08-03 Singapore 138634

2. Institute of Sustainability for Chemicals Energy and Environment (ISCE2) Agency for Science Technology and Research (A*STAR) 1 Pesek Road Jurong Island Singapore 627833

3. Department of Material Science and Engineering National University of Singapore 9 Engineering Drive 1, #03-09 EA Singapore 117575

4. Department of Chemistry National University of Singapore 3 Science Drive 3 Singapore 117543

5. School of Chemistry Chemical Engineering and Biotechnology Nanyang Technological University 21 Nanyang Link Singapore 637371

Abstract

AbstractIn this work, a series of monomethoxy poly(ethylene glycol)‐polycaprolactone (mPEG‐PCL) copolymers with different mass percentages of mPEG was chemically synthesized as form‐stable phase change materials (FSPCMs) for thermal energy storage (TES) application for the first time. Their chemical structures, surface morphology, and thermal properties were studied in terms of nuclear magnetic resonance (NMR), Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), thermogravimetric analysis (TGA), and differential scanning calorimetry (DSC). 1H NMR, gel permeation chromatography (GPC), and FTIR results confirmed the successful ring‐opening polymerization of ϵ‐caprolactone with mPEG macromonomer, and the respective average molecular weight of the copolymers was obtained in the range of 9704–17346 g mol−1. DSC analysis results revealed that the copolymers have a phase change temperature and latent heat in the range of 52.8–57.9 °C and 88.8–114.4 J g−1 respectively and TGA analysis showed that they are thermally stable up to 150 °C. Leakage test results showed that the copolymers (mPEG)x‐(PCL)y displayed excellent form stability with minimal leakage while thermal cycling revealed good thermal reliability. In addition, the copolymers successfully demonstrated their ability to store and release heat for a prolonged period, making them suitable for TES applications like heating water storage tanks.

Publisher

Wiley

Subject

General Chemistry

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