Shi Tao, Gao Xing, Liu Huan, Wang Xiaodong
State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing, 100029, People's Republic of China.
Nanomicro Lett. 2025 Apr 27;17(1):236. doi: 10.1007/s40820-025-01761-w.
To address the limitations of conventional energy systems and optimize the energy conversion pathways and efficiency, a type of "five-in-one" multifunctional phase-change composite with magnetothermal, electrothermal, solar-thermal, and thermoelectric energy conversion and electromagnetic shielding functions is developed for multipurpose applications. Such a novel phase-change composite is fabricated by an innovative combination of paraffin wax (PW) as a phase-change material and a carbonized polyimide/Kevlar/graphene oxide@ZIF-67 complex aerogel as a supporting material. The carbonized complex aerogel exhibits a unique bidirectional porous structure with high porosity and robust skeleton to support the loading of PW. The reduced graphene oxide and CoNC resulting from high-temperature carbonization are anchored on the aerogel skeleton to generate high thermal conduction and magnetic effect, enhancing the phonon and electron transfer of the aerogel and improving its energy conversion efficiency. The phase-change composite not only exhibits excellent solar-thermal, thermoelectric, electrothermal, and magnetothermal energy conversion performance, but also achieves high electromagnetic interference shielding effectiveness of 66.2 dB in the X-band. The introduction of PW significantly improves the thermal energy-storage capacity during multi-energy conversion. The developed composite exhibits great application potential for efficient solar energy utilization, sustainable power generation, outdoor deicing, human thermal therapy, and electronic device protection.
为了克服传统能源系统的局限性并优化能量转换途径和效率,开发了一种具有磁热、电热、太阳能热和热电能量转换以及电磁屏蔽功能的“五合一”多功能相变复合材料,以用于多种用途。这种新型相变复合材料是通过将石蜡(PW)作为相变材料与碳化聚酰亚胺/凯夫拉尔/氧化石墨烯@ZIF-67复合气凝胶作为支撑材料进行创新组合而制备的。碳化复合气凝胶呈现出独特的双向多孔结构,具有高孔隙率和坚固的骨架,以支撑PW的负载。高温碳化产生的还原氧化石墨烯和CoNC锚定在气凝胶骨架上,产生高导热性和磁效应,增强气凝胶的声子和电子转移并提高其能量转换效率。该相变复合材料不仅表现出优异的太阳能热、热电、电热和磁热能量转换性能,而且在X波段实现了66.2 dB的高电磁干扰屏蔽效能。PW的引入显著提高了多能量转换过程中的热能存储能力。所开发的复合材料在高效太阳能利用、可持续发电、户外除冰、人体热疗和电子设备保护方面具有巨大的应用潜力。