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连续双尺度互穿网络碳泡沫-硬脂酸复合材料作为具有理想协同效应的形状稳定相变材料

Continuous Dual-Scale Interpenetrating Network Carbon Foam-Stearic Acid Composite as a Shape-Stabilized Phase Change Material with a Desirable Synergistic Effect.

作者信息

Wu Renquan, Mei Weixiong, Zhou Yunhong, Bi Tiantian, Lin Qilang

机构信息

College of Materials Science and Engineering, Fuzhou University, Fuzhou 350116, Fujian, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2022 Aug 17;14(32):37120-37133. doi: 10.1021/acsami.2c08564. Epub 2022 Aug 5.

DOI:10.1021/acsami.2c08564
PMID:35930699
Abstract

For enhancing the heat storage and encapsulation performances of organic phase change materials (PCMs), a carbon foam (CF) with a continuous dual-scale pore structure (DCF) was developed. Employing the as-prepared DCF as a stearic acid (SA) support, a novel shape-stabilized SA-CF composite PCM with a continuous dual-scale interpenetrating network structure was achieved through the impregnation of SA into the DCF. DCF-900, prepared at an activation temperature of 900 °C, possesses a high loading capacity of 89.54 wt % for melted SA without leakage. The resulting SA/DCF-900 composite with a continuous dual-scale interpenetrating network structure exhibits excellent comprehensive performances with a good synergistic effect. The composite presents a thermal conductivity of 1.298 W/m·K and an encouraging compressive strength of 9.03 MPa, which increase by 2.25-fold and 3.56-fold compared with those of DCF-900, respectively. Furthermore, its melting and freezing enthalpies reach 192.8 and 192.7 J/g with a storage efficiency of about 100%, respectively; meanwhile, it displays excellent thermal cycle stability and reversibility after 600 thermal cycles with a high melting/freezing enthalpy retention rate of up to 96%. More importantly, its light-to-thermal conversion efficiency reaches 91.8% under a light intensity of 100 mW/cm. Consequently, the SA/DCF-900 composite is a promising candidate for high-performance PCMs.

摘要

为了提高有机相变材料(PCM)的蓄热和封装性能,开发了一种具有连续双尺度孔结构(DCF)的碳泡沫(CF)。以制备的DCF为硬脂酸(SA)载体,通过将SA浸渍到DCF中,制备了一种具有连续双尺度互穿网络结构的新型形状稳定的SA-CF复合PCM。在900℃活化温度下制备的DCF-900对熔融SA具有89.54 wt%的高负载量且无泄漏。所得具有连续双尺度互穿网络结构的SA/DCF-900复合材料表现出优异的综合性能和良好的协同效应。该复合材料的热导率为1.298 W/m·K,抗压强度为9.03 MPa,与DCF-900相比分别提高了2.25倍和3.56倍。此外,其熔化和凝固焓分别达到192.8和192.7 J/g,储能效率约为100%;同时,在600次热循环后,它表现出优异的热循环稳定性和可逆性,熔化/凝固焓保留率高达96%。更重要的是,在100 mW/cm的光强下,其光热转换效率达到91.8%。因此,SA/DCF-900复合材料是高性能PCM的一个有前途的候选材料。

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