TY - JOUR
T1 - Graphene and its macroscopic assembly multifunctional materials
T2 - Thermal properties and electromagnetic functions at elevated temperatures
AU - Sun, Wei
AU - Gao, Peng
AU - Ma, Zhuang
AU - Gao, Lihong
AU - Li, Peng
AU - Wang, Xiulan
N1 - Publisher Copyright:
© 2025 Elsevier Ltd
PY - 2025/10
Y1 - 2025/10
N2 - The rapid development of integrated circuits in electronics, aerospace and other fields poses new challenges to the thermal diffusion and elevated-temperature electromagnetic interference shielding ability of products. Carbon-based materials are the most promising candidates for multifunctional applications due to their excellent thermal conductivity, electrical properties, light weight, flexibility and reasonable processing cost. In particular, graphene has attracted extensive attention owing to its extraordinary thermal conductivity and exceptional electrical characteristics. This paper first introduces the fundamental mechanisms of heat transfer and electromagnetic response. Specifically, we provides a comprehensive overview of recent advances in the thermal properties and thermal conductivity enhancement of graphene-related materials, analyzing the application potential of graphene macroscopic assembly materials in thermal management. Furthermore, typical studies on the temperature-dependent electromagnetic performance of graphene-based materials are reviewed. Finally, future development trends of graphene-based materials in the integrated thermal/electromagnetic management field are prospected.
AB - The rapid development of integrated circuits in electronics, aerospace and other fields poses new challenges to the thermal diffusion and elevated-temperature electromagnetic interference shielding ability of products. Carbon-based materials are the most promising candidates for multifunctional applications due to their excellent thermal conductivity, electrical properties, light weight, flexibility and reasonable processing cost. In particular, graphene has attracted extensive attention owing to its extraordinary thermal conductivity and exceptional electrical characteristics. This paper first introduces the fundamental mechanisms of heat transfer and electromagnetic response. Specifically, we provides a comprehensive overview of recent advances in the thermal properties and thermal conductivity enhancement of graphene-related materials, analyzing the application potential of graphene macroscopic assembly materials in thermal management. Furthermore, typical studies on the temperature-dependent electromagnetic performance of graphene-based materials are reviewed. Finally, future development trends of graphene-based materials in the integrated thermal/electromagnetic management field are prospected.
KW - Electromagnetic interference shielding
KW - Graphene
KW - Microwave absorption
KW - Polymer
KW - Thermal conductivity
UR - http://www.scopus.com/pages/publications/105015952686
U2 - 10.1016/j.carbon.2025.120828
DO - 10.1016/j.carbon.2025.120828
M3 - Review article
AN - SCOPUS:105015952686
SN - 0008-6223
VL - 245
JO - Carbon
JF - Carbon
M1 - 120828
ER -