4.6 Article

A Flexible and Infrared-Transparent Bi2Te3-Carbon Nanotube Thermoelectric Hybrid for both Active and Passive Cooling

期刊

ACS APPLIED ELECTRONIC MATERIALS
卷 2, 期 9, 页码 3008-3016

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsaelm.0c00617

关键词

IR-transparent; flexible thermoelectrics; carbon nanotubes; Bi2Te3; thermoelectric hybrid

资金

  1. Ministry of Science and Technology of China [2017YFA0700702, 2016YFA0200101, 2017YFA0700705, 2019QY(Y)0501]
  2. National Natural Science Foundation of China [51927803, 51571193, 51402310, 51625203]
  3. Science Foundation for The Excellent Youth Scholars of Liaoning Province of China [2019-YQ-08]

向作者/读者索取更多资源

On-demand thermal management based on the Peltier effect of thermoelectric (TE) materials has attracted great attention due to its unique advantages of a simple structure, no moving parts, quietness, compactness, and precise temperature control. However, conventional bulk TE materials are inherently rigid, and it is therefore difficult to acquire close contact with heat sources and heat sinks with complex geometries, resulting in poor heat transfer and cooling ability. In addition, they are optically opaque and dense, blocking passive heat dissipation by thermal radiation and air convection. Tailoring TE materials with mid-infrared (IR) transparency and good flexibility to achieve both active and passive cooling remains a great challenge. Here, we report a nanoporous TE hybrid composed of (000l)-textured n-type Bi2Te3 nanocrystals anchored on a single-wall carbon nanotube (SWCNT) network. It achieves an in-plane power factor of similar to 265 mu W m(-1) K-2 and a low thermal conductivity of similar to 0.34 W m(-1) K-1, yielding a TE figure of merit (ZT) value of similar to 0.23 in the temperature range from room temperature to similar to 373 K. This hybrid has excellent flexibility and a maximum IR transparency of similar to 16%. Our results open a way to develop efficient TEs with both active and passive cooling abilities.

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