Nanostructured polymer films with metal-like thermal conductivity
Наноструктурированные полимерные плёнки с теплопроводностью, сравнимой с теплопроводностью металлов
2019-04-16
SCID: 54.1/z25mawqs
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nanofiberspolyethylene filmsthermal conductivitythermal managementthermal modeling
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Abstract (AI)
Abstract Due to their unique properties, polymers – typically thermal insulators – can open up opportunities for advanced thermal management when they are transformed into thermal conductors. Recent studies have shown polymers can achieve high thermal conductivity, but the transport mechanisms have yet to be elucidated. Here we report polyethylene films with a high thermal conductivity of 62 Wm −1 K −1 , over two orders-of-magnitude greater than that of typical polymers (~0.1 Wm −1 K −1 ) and exceeding that of many metals and ceramics. Structural studies and thermal modeling reveal that the film consists of nanofibers with crystalline and amorphous regions, and the amorphous region has a remarkably high thermal conductivity, over ~16 Wm −1 K −1 . This work lays the foundation for rational design and synthesis of thermally conductive polymers for thermal management, particularly when flexible, lightweight, chemically inert, and electrically insulating thermal conductors are required.
Key Findings
1
Polyethylene films achieve a thermal conductivity of 62 W m−1 K−1, more than two orders of magnitude above typical polymers (~0.1 W m−1 K−1).
2
Structural analysis and thermal modeling show that the films comprise nanofibers containing crystalline and amorphous regions.
3
The amorphous regions exhibit remarkably high thermal conductivity, exceeding ~16 W m−1 K−1 and contributing substantially to overall heat transport.
4
The findings establish a basis for designing flexible, lightweight, chemically inert, and electrically insulating polymer thermal conductors.
5
The measured conductivity exceeds that of many metals and ceramics, demonstrating metal-like thermal transport in a polymer film.
Research Object
nanostructured polyethylene films consisting of crystalline and amorphous nanofiber regions
Research Subject
thermal conductivity and heat-transport mechanisms of the films, particularly the exceptionally high conductivity of their amorphous regions
Publication Details
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2019-04-16
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