Abstract Synthesis and properties of crosslinking halloysite nanotubes/polyurethane-based solid-solid phase change materials
首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Synthesis and properties of crosslinking halloysite nanotubes/polyurethane-based solid-solid phase change materials
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Synthesis and properties of crosslinking halloysite nanotubes/polyurethane-based solid-solid phase change materials

机译:交联霍罗伊石纳米管/聚氨酯基固体相变材料的合成与性能

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AbstractPolyurethane-based solid-solid phase change materials were first synthesized using polyethylene glycol (PEG) and hexamethylene diisocyanate biuret (HDIB), and the influence of halloysite nanotubes (HNTs) on this system was investigated. HNTs can not only serve as crosslinking agent in synergy with HDIB, which reinforces the solid-solid phase change properties of the system that has no leakage even at the temperature that 40°C higher above the melting temperature of PEG, but also greatly improve the latent heat of the system from 86.8 to 118.7J/g, as a result of heterogeneous nucleation effect, which can make up partial latent heat loss caused by crosslinking. Also, HNTs endows the system with excellent thermal stability, where the temperature at 5% weight loss is increased by 53°C. The synthesized PCMs have extensive applying prospects in thermal energy storage fields.Graphical abstractThe crosslinking network, formed with HNTs and HDIB as crosslinking points, could prevent the dissolution of PEG when melting and endow the system with excellent form-stability.Display OmittedHighlights
机译:<![cdata [ 抽象 首先使用聚乙二醇(PEG)和六亚甲基二异氰酸酯基脲(HDIB)合成聚氨酯的固体相变材料,以及影响研究了该系统的HalloySite Nanotubes(HNT)。 HNT不仅可以用作HDIB的协同作用中的交联剂,它加强了即使在40°C高于钉熔化温度的温度下也没有泄漏的固体相变性能,但也大大改善了由于异质成核效应,系统的潜热量为86.8至118.7J / g,这可以构成通过交联引起的部分潜热损失。此外,HNT赋予该系统具有出色的热稳定性,其中5%重量损失的温度增加了53℃。合成的PCMS在热能存储场中具有广泛应用前景。 图形抽象 用HNT和HDIB形成的交联网络作为交联点,可以防止熔化时倾析并赋予该系统具有优异的形式稳定性。 亮点

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