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用于太阳能转换和热能存储应用的具有增强热导率和机械性能的柔性聚烯烃弹性体/石蜡/氧化铝/石墨烯纳米片相变材料

Flexible Polyolefin Elastomer/Paraffin Wax/Alumina/Graphene Nanoplatelets Phase Change Materials with Enhanced Thermal Conductivity and Mechanical Performance for Solar Conversion and Thermal Energy Storage Applications.

作者信息

Tian Jie, Wang Chouxuan, Wang Kaiyuan, Xue Rong, Liu Xinyue, Yang Qi

机构信息

School of Civil Engineering and Architecture, Shaanxi University of Technology, Hanzhong 723099, China.

National and Local Engineering Laboratory for Slag Comprehensive Utilization and Environment Technology, School of Materials Science and Engineering, Shaanxi University of Technology, Hanzhong 723099, China.

出版信息

Polymers (Basel). 2024 Jan 29;16(3):362. doi: 10.3390/polym16030362.

Abstract

In this study, electrically insulating polyolefin elastomer (POE)-based phase change materials (PCMs) comprising alumina (AlO) and graphene nanoplatelets (GNPs) are prepared using a conventional injection moulding technique, which exhibits promising applications for solar energy storage due to the reduced interfacial thermal resistance, excellent stability, and proficient photo-thermal conversion efficiency. A synergistic interplay between AlO and GNPs is observed, which facilitates the establishment of thermally conductive pathways within the POE/paraffin wax (POE/PW) matrix. The in-plane thermal conductivity of POE/PW/GNPs 5 wt%/AlO 40 wt% composite reaches as high as 1.82 W mK, marking a remarkable increase of ≈269.5% when compared with that of its unfilled POE/PW counterpart. The composite exhibits exceptional heat dissipation capabilities, which is critical for thermal management applications in electronics. Moreover, POE/PW/GNPs/AlO composites demonstrate outstanding electrical insulation, enhanced mechanical performance, and efficient solar energy conversion and transportation. Under 80 mW cm NIR light irradiation, the temperature of the POE/PW/GNPs 5 wt%/AlO 40 wt% composite reaches approximately 65 °C, a notable 20 °C improvement when compared with the POE/PW blend. The pragmatic and uncomplicated preparation method, coupled with the stellar performance of the composites, opens a promising avenue and broader possibility for developing flexible PCMs for solar conversion and thermal storage applications.

摘要

在本研究中,采用传统注塑技术制备了包含氧化铝(AlO)和石墨烯纳米片(GNPs)的基于电绝缘聚烯烃弹性体(POE)的相变材料(PCMs),由于界面热阻降低、稳定性优异以及光热转换效率高,该材料在太阳能存储方面具有广阔的应用前景。观察到AlO和GNPs之间存在协同相互作用,这有助于在POE/石蜡(POE/PW)基体中建立热传导路径。POE/PW/GNPs 5 wt%/AlO 40 wt%复合材料的面内热导率高达1.82 W mK,与未填充的POE/PW相比,显著提高了约269.5%。该复合材料具有出色的散热能力,这对于电子设备的热管理应用至关重要。此外,POE/PW/GNPs/AlO复合材料表现出优异的电绝缘性、增强的机械性能以及高效的太阳能转换和传输能力。在80 mW cm近红外光照射下,POE/PW/GNPs 5 wt%/AlO 40 wt%复合材料的温度达到约65°C,与POE/PW共混物相比显著提高了20°C。这种实用且简单的制备方法,再加上复合材料的出色性能,为开发用于太阳能转换和热存储应用的柔性PCMs开辟了一条充满希望的途径和更广阔的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ecc/10857498/04b11e135b44/polymers-16-00362-g001.jpg

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