潘万里,陈长中,柳文敏,彭克林.化学通报,2016,79(3):254-258.
六羟基化合物为骨架的高分子固-固相变材料的合成与性能
Synthesis and Properties of Polymeric Solid-solid Phase Change Material Based on the Skeleton of Hexahydroxy Compounds
投稿时间:2015-07-28  修订日期:2015-10-07
DOI:
中文关键词:  固-固相变材料  相变性能 聚乙二醇  热能储存
英文关键词:solid-solid phase change materials  phase transition properties  polyethylene glycol  thermal energy storage
基金项目:国家青年科学基金资助项目(21404061)、南阳师范学院青年基金项目(QN2013050)和南阳师范学院STP项目(STP2012010)
作者单位E-mail
潘万里 南阳师范学院化学与制药工程学院 南阳 473061 wmliu1969@nynu.edu.cn 
陈长中 南阳师范学院化学与制药工程学院 南阳 473061  
柳文敏* 南阳师范学院化学与制药工程学院 南阳 473061 liuwm1969@163.com 
彭克林 南阳师范学院化学与制药工程学院 南阳 473061  
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中文摘要:
      分别使用三种含六羟基的化合物(山梨醇、双季戊四醇和肌醇)作为分子骨架,聚乙二醇(PEG)作为相变功能链,4,4’-二苯基甲烷二异氰酸酯(MDI)为交联剂,合成了三种具有不同交联结构的新型固-固相变储能材料。通过傅里叶变换红外光谱(FTIR)、X-射线衍射(XRD)、偏光显微镜(POM)、示差扫描量热法(DSC)和热重量分析法(TG)分别对合成材料的分子结构、结晶性能、相变行为和热稳定性进行了研究。结果显示所制备的材料在30~70℃的温度范围内具有典型的固-固相变特性,其升温/冷却过程的相变焓最高可达107.5 J?g-1/102.9 J?g-1。此外,通过热重分析发现合成材料具有较好的可重复使用性和热稳定性。因此,合成的新型固-固相变材料在热能储存和控温领域具有巨大的应用潜力。
英文摘要:
      Three kinds of new polymeric SSPCMs with different crosslinking structures were synthesized and characterized for thermal energy storage. In the SSPCMs, three hexahydroxy compounds (sorbitol, dipentaerythritol and inositol) were individually employed as the molecular skeleton and polyethylene glycol (PEG) was used as the phase change functional chain. The molecular structure, crystalline properties, phase change behaviors, thermal reliability and stability of the synthesized SSPCMs were investigated by FT-IR, XRD, POM, DSC and TG, respectively. The results show that the prepared SSPCMs possess high thermal energy storage density and an applicable temperature range of 30-70 oC, and the maximum phase change enthalpy in the heating and cooling process for the SSPCMs is 107.5 J?g-1 and 102.9 J?g-1, respectively. The prepared SSPCMs have good reusability, excellent thermal reliability and stability from the heating-cooling thermal cycle test and TG curves. The resultant SSPCMs could be potentially applied in the areas of thermal energy storage and temperature-control.
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