材料科学
碳纳米管
热能储存
石墨烯
热导率
潜热
复合材料
相变材料
热稳定性
化学工程
储能
热的
聚合物
导电体
聚合
氧化物
乳状液
原位聚合
复合数
相(物质)
热能
纳米管
乳液聚合
界面聚合
保温
散热膏
甲基丙烯酸酯
作者
Bo-Wei Du,Xinbing Jiang,Zhijie Zhang,Kai Xi,Borui Zhang,Qinghao Yang,Shujiang Ding
出处
期刊:Chemical Science
[Royal Society of Chemistry]
日期:2025-11-05
卷期号:17 (1): 205-213
被引量:1
摘要
Efficient thermal energy storage requires phase change materials (PCMs) with both high latent heat and enhanced thermal conductivity. Here, polymethyl methacrylate (PMMA)-based PCM microcapsules were synthesized via emulsion polymerization with interfacial self-assembly, incorporating graphene oxide (GO) and carbon nanotubes (CNTs) as conductive fillers. Optimization of emulsifier type and shell-to-core ratio improved morphology and encapsulation, with a 0.50 ratio achieving 67.7% high loading and latent heat exceeding 165 J g-1. Comprehensive characterization (FTIR, Raman, XRD, XPS) confirmed strong interfacial interactions between fillers and polymer shells. The combined addition of GO and CNTs reduced leakage, increased latent heat retention by over 12%, and yielded uniform capsule morphology. Infrared thermal imaging further revealed that PCM-GO/CNTs microcapsules exhibited slower cooling, more stable temperature plateaus, and superior heat storage performance compared with control and single-filler systems. These findings highlight the effectiveness of hybrid GO/CNT incorporation in enhancing both structural stability and thermal regulation, offering a promising route for advanced thermal energy storage applications.
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