Flexible Nanocrystal-Coated Glass Fibers for High-Performance Thermoelectric Energy Harvesting
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  • 作者:Daxin Liang ; Haoran Yang ; Scott W. Finefrock ; Yue Wu
  • 刊名:Nano Letters
  • 出版年:2012
  • 出版时间:April 11, 2012
  • 年:2012
  • 卷:12
  • 期:4
  • 页码:2140-2145
  • 全文大小:426K
  • 年卷期:v.12,no.4(April 11, 2012)
  • ISSN:1530-6992
文摘
Recent efforts on the development of nanostructured thermoelectric materials from nanowires (Boukai, A. I.; et al. Nature2008, 451, (7175), 168鈥?71; Hochbaum, A. I.; et al. Nature2008, 451, (7175), 163鈥?67) and nanocrystals (Kim, W.; et al. Phys. Rev. Lett.2006, 96, (4), 045901; Poudel, B.; et al. Science2008, 320, (5876), 634-638; Scheele, M.; et al. Adv. Funct. Mater.2009, 19, (21), 3476鈥?483; Wang, R. Y.; et al. Nano Lett.2008, 8, (8), 2283鈥?288) show the comparable or superior performance to the bulk crystals possessing the same chemical compositions because of the dramatically reduced thermal conductivity due to phonon scattering at nanoscale surface and interface. Up to date, the majority of the thermoelectric devices made from these inorganic nanostructures are fabricated into rigid configuration. The explorations of truly flexible composite-based flexible thermoelectric devices (See, K. C.; et al. Nano Lett.2010, 10, (11), 4664鈥?667) have thus far achieved much less progress, which in principle could significantly benefit the conversion of waste heat into electricity or the solid-state cooling by applying the devices to any kind of objects with any kind of shapes. Here we report an example using a scalable solution-phase deposition method to coat thermoelectric nanocrystals onto the surface of flexible glass fibers. Our investigation of the thermoelectric properties yields high performance comparable to the state of the art from the bulk crystals and proof-of-concept demonstration also suggests the potential of wrapping the thermoelectric fibers on the industrial pipes to improve the energy efficiency.

Keywords:

Thermoelectric; flexible; nanocrystal-coated glass fibers; high-performance

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