Functionalization mediates heat transport in graphene nanoflakes

The high thermal conductivity of graphene is considerably reduced when the two-dimensional material is in contact with a substrate. Here, the authors show that thermal management of a micro heater is improved using graphene-based films covalently bonded by amino-silane molecules to graphene oxide.

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Autores principales: Haoxue Han, Yong Zhang, Nan Wang, Majid Kabiri Samani, Yuxiang Ni, Zainelabideen Y. Mijbil, Michael Edwards, Shiyun Xiong, Kimmo Sääskilahti, Murali Murugesan, Yifeng Fu, Lilei Ye, Hatef Sadeghi, Steven Bailey, Yuriy A. Kosevich, Colin J. Lambert, Johan Liu, Sebastian Volz
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/0ca2b81b745943d290f7163849968a93
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spelling oai:doaj.org-article:0ca2b81b745943d290f7163849968a932021-12-02T17:32:38ZFunctionalization mediates heat transport in graphene nanoflakes10.1038/ncomms112812041-1723https://doaj.org/article/0ca2b81b745943d290f7163849968a932016-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms11281https://doaj.org/toc/2041-1723The high thermal conductivity of graphene is considerably reduced when the two-dimensional material is in contact with a substrate. Here, the authors show that thermal management of a micro heater is improved using graphene-based films covalently bonded by amino-silane molecules to graphene oxide.Haoxue HanYong ZhangNan WangMajid Kabiri SamaniYuxiang NiZainelabideen Y. MijbilMichael EdwardsShiyun XiongKimmo SääskilahtiMurali MurugesanYifeng FuLilei YeHatef SadeghiSteven BaileyYuriy A. KosevichColin J. LambertJohan LiuSebastian VolzNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Haoxue Han
Yong Zhang
Nan Wang
Majid Kabiri Samani
Yuxiang Ni
Zainelabideen Y. Mijbil
Michael Edwards
Shiyun Xiong
Kimmo Sääskilahti
Murali Murugesan
Yifeng Fu
Lilei Ye
Hatef Sadeghi
Steven Bailey
Yuriy A. Kosevich
Colin J. Lambert
Johan Liu
Sebastian Volz
Functionalization mediates heat transport in graphene nanoflakes
description The high thermal conductivity of graphene is considerably reduced when the two-dimensional material is in contact with a substrate. Here, the authors show that thermal management of a micro heater is improved using graphene-based films covalently bonded by amino-silane molecules to graphene oxide.
format article
author Haoxue Han
Yong Zhang
Nan Wang
Majid Kabiri Samani
Yuxiang Ni
Zainelabideen Y. Mijbil
Michael Edwards
Shiyun Xiong
Kimmo Sääskilahti
Murali Murugesan
Yifeng Fu
Lilei Ye
Hatef Sadeghi
Steven Bailey
Yuriy A. Kosevich
Colin J. Lambert
Johan Liu
Sebastian Volz
author_facet Haoxue Han
Yong Zhang
Nan Wang
Majid Kabiri Samani
Yuxiang Ni
Zainelabideen Y. Mijbil
Michael Edwards
Shiyun Xiong
Kimmo Sääskilahti
Murali Murugesan
Yifeng Fu
Lilei Ye
Hatef Sadeghi
Steven Bailey
Yuriy A. Kosevich
Colin J. Lambert
Johan Liu
Sebastian Volz
author_sort Haoxue Han
title Functionalization mediates heat transport in graphene nanoflakes
title_short Functionalization mediates heat transport in graphene nanoflakes
title_full Functionalization mediates heat transport in graphene nanoflakes
title_fullStr Functionalization mediates heat transport in graphene nanoflakes
title_full_unstemmed Functionalization mediates heat transport in graphene nanoflakes
title_sort functionalization mediates heat transport in graphene nanoflakes
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/0ca2b81b745943d290f7163849968a93
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