气凝胶
材料科学
光热治疗
碳纳米管
复合数
能量转换效率
热能储存
复合材料
光热效应
热的
碳纤维
能量转换
吸收(声学)
热电效应
光伏系统
太阳能
光电子学
相变材料
焓
热电发电机
辐照
热能
相(物质)
储能
工作(物理)
纳米技术
作者
Jialu Gao,Jifen Wang,Jifen Wang,Wenjing Wang,Yan Zhang,Hanwen Hu,Ruijun Zou,Jiawei Wang,Jiawei Wang,Huaqing Xie
标识
DOI:10.1021/acsanm.6c00569
摘要
Traditional phase change materials (PCMs) have problems such as leakage, low energy storage efficiency, and poor photothermal conversion performance. n-Eicosane (C20) was used as the PCM and poly(vinyl alcohol) (PVA) aerogel used as the support framework. We added carbon nanotubes (CNT) and Ti3C2 MXene into the aerogel to improve the photothermal conversion properties. A composite PCM C20/CNT/MXene/PVA (C20/CMPA) with photothermal storage and efficient photothermal conversion properties was obtained. The prepared C20/CMPA7 has relatively high enthalpy of fusion and enthalpy of solidification, which are 195.2 J g–1 (86.1% of C20) and 192.1 J g–1 (91.5% of C20), respectively. The C20/CMPA7 exhibits excellent light absorption performance and photothermal conversion efficiency. Under the simulated sunlight irradiation of 1.5 kW m–2, the photothermal conversion efficiency of C20/CMPA7 reaches 97.71%. Significantly, the surface temperature of C20/CMPA7 rose to 70.7 °C within 1500 s. We designed a typical solar thermoelectric generator using the prepared composite material, which successfully achieved the conversion of solar thermal energy. The output voltage and current were 343.36 mV and 31.31 mA, respectively, at 2000 s, which could maintain additional working time even in dark conditions. This work provides insights into the design of solar-driven thermal interface materials and the clean production of electricity.
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