材料科学
碳纳米管
热电效应
散热膏
热导率
热电材料
碳纳米管致动器
制作
纳米技术
电子设备和系统的热管理
热电发电机
热的
复合材料
纳米管
机械工程
碳纳米管的光学性质
物理
工程类
病理
气象学
热力学
替代医学
医学
作者
Ying Zhou,Qingshuo Wei,Minfang Zhang,H. Nakajima,Toshiya Okazaki,Takeo Yamada,Kenji Hata
标识
DOI:10.1021/acsami.3c15704
摘要
Carbon nanotubes (CNTs) stand out for their exceptional electrical, thermal, and mechanical attributes, making them highly promising materials for cutting-edge, lightweight, and flexible thermoelectric applications. However, realizing the full potential of advanced thermoelectric CNTs requires precise management of their electrical and thermal characteristics. This study, through interface optimization, demonstrates the feasibility of reducing the thermal conductivity while preserving robust electrical conductivity in single-walled CNT films. Our findings reveal that blending two functionalized CNTs offers a versatile method of tailoring the structural and electronic properties of CNT films. Moreover, the modified interface exerts a substantial influence over thermal and electrical transfer, effectively suppressing heat dissipation and facilitating thermoelectric power generation within CNT films. As a result, we have successfully produced both p- and n-type thermoelectric CNTs, attaining impressive power factors of 507 and 171 μW/mK2 at room temperature, respectively. These results provide valuable insights into the fabrication of high-performance thermoelectric CNT films.
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