Kim Hong Gun, Kim Yong-Sun, Kwac Lee Ku, Shin Hee Jae, Lee Sang Ok, Lee U Sang, Shin Hye Kyoung
Institute of Carbon Technology, Jeonju University, 303 Cheonjam-ro, Wansan-gu, Jeonju-si, Jeollabuk-do 55069, Korea.
Nanomaterials (Basel). 2019 Jan 28;9(2):158. doi: 10.3390/nano9020158.
Carbon foam was prepared from carboxymethyl cellulose (CMC) and Ag, Al and carbon nanotubes (CNTs), and graphene was added to the foam individually, to investigate the enhancement effects on the thermal conductivity. In addition, we used the vacuum method to impregnate erythritol of the phase change material (PCM) into the carbon foam samples to maximize the latent heat and minimize the latent heat loss during thermal cycling. Carbon foams containing Ag (CF-Ag), Al (CF-Al), CNT (CF-CNT) and graphene (CF-G) showed higher thermal conductivity than the carbon foam without any nano thermal conducting materials (CF). From the variations in temperature with time, erythritol added to CF, CF-Ag, CF-Al, CF-CNT, and CF-G was observed to decrease the time required to reach the phase change temperature when compared with pure erythritol. Among them, erythritol added to CF-G had the fastest phase change temperature, and this was related to the fact that this material had the highest thermal conductivity of the carbon foams used in this study. According to differential scanning calorimetry (DSC) analyses, the materials in which erythritol was added (CF, CF-Ag, CF-Al, CF-CNT, and CF-G) showed lower latent heat values than pure erythritol, as a result of their supplementation with carbon foam. However, the latent heat loss of these supplemented materials was less than that of pure erythritol during thermal cycling tests because of capillary and surface tension forces.
由羧甲基纤维素(CMC)与银、铝和碳纳米管(CNT)制备了碳泡沫,并分别向泡沫中添加石墨烯,以研究其对热导率的增强效果。此外,我们采用真空法将相变材料(PCM)赤藓糖醇浸渍到碳泡沫样品中,以在热循环过程中最大化潜热并最小化潜热损失。含银(CF-Ag)、铝(CF-Al)、碳纳米管(CF-CNT)和石墨烯(CF-G)的碳泡沫显示出比不含任何纳米导热材料的碳泡沫(CF)更高的热导率。从温度随时间的变化来看,与纯赤藓糖醇相比,添加到CF、CF-Ag、CF-Al、CF-CNT和CF-G中的赤藓糖醇达到相变温度所需的时间减少。其中,添加到CF-G中的赤藓糖醇相变温度最快,这与该材料在本研究中使用的碳泡沫中具有最高热导率这一事实有关。根据差示扫描量热法(DSC)分析,添加赤藓糖醇的材料(CF、CF-Ag、CF-Al、CF-CNT和CF-G)由于添加了碳泡沫,其潜热值低于纯赤藓糖醇。然而,由于毛细管力和表面张力,在热循环测试中这些添加材料的潜热损失小于纯赤藓糖醇。