Wu Renquan, Mei Weixiong, Zhou Yunhong, Bi Tiantian, Lin Qilang
College of Materials Science and Engineering, Fuzhou University, Fuzhou 350116, Fujian, People's Republic of China.
ACS Appl Mater Interfaces. 2022 Aug 17;14(32):37120-37133. doi: 10.1021/acsami.2c08564. Epub 2022 Aug 5.
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.
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。