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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Novel Flexible Phase Change Materials with Mussel-Inspired Modification of Melamine Foam for Simultaneous Light-Actuated Shape Memory and Light-to-Thermal Energy Storage Capability
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Novel Flexible Phase Change Materials with Mussel-Inspired Modification of Melamine Foam for Simultaneous Light-Actuated Shape Memory and Light-to-Thermal Energy Storage Capability

机译:具有贻贝式泡沫的新型柔性相变材料,用于同时光致动的形状记忆和光 - 热能存储能力

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摘要

Form-stable phase change materials (PCMs) are widely used for thermal management. However, the strong rigidity and the weak photoabsorption ability have hindered their practical applications. Herein, we report a flexible PCM based on paraffin wax (PW) and polydopamine-coated melamine foam ([email?protected]) for the seamlessly combined light-actuated shape memory and light-to-thermal energy storage capability. The [email?protected] foams with different PDA contents, which act as supporting scaffolds to adsorb PW, are successfully obtained by varying the immersion times and the dopamine concentrations. The low density and high porosity of [email?protected] foams allow for high weight fraction of PW to be incorporated, making the PCMs show high latent heat and encapsulation ability. Simultaneously, the elastic [email?protected] foams impart the PCMs with good shape memory property by triggering the phase transition of PW. More importantly, due to the efficient photothermal effect of PDA coating, the PCMs exhibit excellent light-actuated shape memory effect (shape recovery ratio ~ 100%, shape recovery speed ~ 100 s) and solar-to-thermal energy storage efficiency (80.8%). The light-actuated shape recovery rates and the solar-to-thermal transfer rates are increased with the augmented amount of PDA coating. Besides, the PCMs exhibit quite stable shape memory cyclic performance and thermal reliability. This study provides a new strategy to design flexible and light-responsive PCMs with the potential to be used in advanced solar energy storage systems.
机译:形成稳定的相变材料(PCM)广泛用于热管理。然而,强烈的刚性和薄弱的光吸收能力阻碍了它们的实际应用。在此,我们报告了基于石蜡(PW)和聚二胺涂覆的三聚氰胺泡沫的柔性PCM([电子邮件?保护]),用于无缝组合的光致动形式记忆和光 - 热能存储能力。通过改变浸入时间和多巴胺浓度,成功地获得了用作配套支架的不同PDA含量的[电子邮件吗?受保护的]泡沫。 [邮件吗?保护]泡沫的低密度和高孔隙率允许掺入高重量的PW,使PCM显示出高潜热和封装能力。同时,弹性[电子邮件吗?受保护的]泡沫通过触发PW的相位转换来赋予具有良好形状内存特性的PCM。更重要的是,由于PDA涂层的有效光热效应,PCMS表现出优异的光致动形记忆效果(形状回收率〜100%,形状回收速度〜100s)和太阳能储能储存效率(80.8% )。随着PDA涂层的增强量,增加了光致动的形状回收率和太阳能传递速率。此外,PCMS表现出相当稳定的形状记忆循环性能和热可靠性。本研究提供了一种设计灵活和光响应式PCM的新策略,其中可能用于高级太阳能存储系统。

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  • 作者单位

    Key Laboratory of Advanced Technologies of Materials Ministry of Education of China School of Materials Science and Engineering Southwest Jiaotong University;

    Key Laboratory of Advanced Technologies of Materials Ministry of Education of China School of Materials Science and Engineering Southwest Jiaotong University;

    Key Laboratory of Advanced Technologies of Materials Ministry of Education of China School of Materials Science and Engineering Southwest Jiaotong University;

    Key Laboratory of Advanced Technologies of Materials Ministry of Education of China School of Materials Science and Engineering Southwest Jiaotong University;

    Key Laboratory of Advanced Technologies of Materials Ministry of Education of China School of Materials Science and Engineering Southwest Jiaotong University;

    Key Laboratory of Advanced Technologies of Materials Ministry of Education of China School of Materials Science and Engineering Southwest Jiaotong University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Phase change; Shape memory property; Melamine foam; Polydopamine; Light-responsive;

    机译:相变;形状记忆性质;三聚氰胺泡沫;多茶胺;轻响应;

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