Kang Seongeun, Kim Woochan, Song Chimin, Hong Younggi, Kim Suji, Goh Munju, Chung Sang Kug, Lee Joohyung
Department of Chemical Engineering, Myongji University, 116 Myongji-ro, Cheoin-gu, Yongin 17058, Gyeonggi-do, Korea.
Department of Mechanical Engineering, Myongji University, 116 Myongji-ro, Cheoin-gu, Yongin 17058, Gyeonggi-do, Korea.
ACS Appl Mater Interfaces. 2023 Aug 2;15(30):36781-36791. doi: 10.1021/acsami.3c05887. Epub 2023 Jul 20.
Phase change materials (PCMs) are considered useful tools for efficient thermal management and thermal energy utilization in various application fields. In this study, a colloidal PCM-in-liquid metal (LM) system is demonstrated as a novel platform composite with excellent latent heat storage capability, high thermal and electrical conductivities, and unique viscoelastic properties. In the proposed formulation, eutectic Ga-In is utilized as a high-thermal-conductivity and high-fluidity liquid matrix in which paraffinic PCM microparticles with various solid-liquid phase transition temperatures are suspended as fillers. Good compatibility between the fillers and matrix is achieved by the nanosized inorganic oxides (titania) adsorbed at the filler-matrix interface; thus, the composite is produced via simple vortex mixing without tedious pre- or post-processing. The composite shows unique trade-off effects among various properties, i.e., elastic modulus, yield stress, density, thermal conductivity, and melting or crystallization enthalpy, which can be easily controlled by varying the contents of the suspended fillers. A Joule heating device incorporating the composite exhibits improved electrothermal performance owing to the synergy between the high electrical conductivity and latent heat storage capability of the composite. The proposed platform may be exploited for the rational design and facile manufacture of high-performance form-factor-free latent heat storage systems for various potential applications such as battery thermal management and flexible heaters.
相变材料(PCM)被认为是在各种应用领域中进行高效热管理和热能利用的有用工具。在本研究中,一种胶体状的液态金属(LM)中含相变材料的体系被证明是一种新型的平台复合材料,具有出色的潜热存储能力、高导热率和电导率以及独特的粘弹性。在所提出的配方中,共晶镓铟被用作高导热率和高流动性的液体基质,其中具有不同固液相变温度的石蜡基相变材料微粒作为填料悬浮其中。通过吸附在填料 - 基质界面的纳米级无机氧化物(二氧化钛)实现了填料与基质之间的良好相容性;因此,该复合材料通过简单的涡旋混合制备,无需繁琐的预处理或后处理。该复合材料在各种性能之间表现出独特的权衡效应,即弹性模量、屈服应力、密度、导热率以及熔化或结晶焓,这些性能可以通过改变悬浮填料的含量轻松控制。包含该复合材料的焦耳加热装置由于复合材料的高电导率和潜热存储能力之间的协同作用而表现出改善的电热性能。所提出的平台可用于合理设计和轻松制造用于各种潜在应用(如电池热管理和柔性加热器)的高性能无形状因子潜热存储系统。