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Fabrication and simulation of a layered ultrahigh thermal conductive material made of self-assembled graphene and polydopamine on a copper substrate

A composite material of graphene (G) and polydopamine (PDA) on a copper (Cu) substrate (G/PDA@Cu) was fabricated successfully by sequential immersion deposition in a dopamine solution and an aqueous graphene oxide suspension before annealing. Optimum preparation conditions were explored by the ortho...

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Autores principales: Li, Shuguang, Hou, Xiaomin, Lu, Shixiang, Xu, Wenguo, Tao, Jiasheng, Zhao, Zhenlu, Hu, Guojie, Gao, Fengxin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9042715/
https://www.ncbi.nlm.nih.gov/pubmed/35494770
http://dx.doi.org/10.1039/d1ra05252g
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author Li, Shuguang
Hou, Xiaomin
Lu, Shixiang
Xu, Wenguo
Tao, Jiasheng
Zhao, Zhenlu
Hu, Guojie
Gao, Fengxin
author_facet Li, Shuguang
Hou, Xiaomin
Lu, Shixiang
Xu, Wenguo
Tao, Jiasheng
Zhao, Zhenlu
Hu, Guojie
Gao, Fengxin
author_sort Li, Shuguang
collection PubMed
description A composite material of graphene (G) and polydopamine (PDA) on a copper (Cu) substrate (G/PDA@Cu) was fabricated successfully by sequential immersion deposition in a dopamine solution and an aqueous graphene oxide suspension before annealing. Optimum preparation conditions were explored by the orthogonal experimental method. The morphology and chemical composition of G/PDA@Cu were studied systematically by a series of characterization techniques. The thermal-conductive performance was evaluated by a laser flash thermal analyser. The thermal conductivity of G/PDA@Cu was 519.43 W m(−1) K(−1), which is ultrahigh and 30.50% higher than that of the Cu substrate. The adhesion force between G/PDA and the Cu substrate was 4.18 mN, which means that G bonds to the Cu substrate tightly. The model simulation also showed that G/PDA@Cu exhibits excellent thermal conductivity, allowing it to play a significant role in the thermal management of advanced electronic chips. The thermal-conductive devices using this material were prepared for practical applications.
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spelling pubmed-90427152022-04-28 Fabrication and simulation of a layered ultrahigh thermal conductive material made of self-assembled graphene and polydopamine on a copper substrate Li, Shuguang Hou, Xiaomin Lu, Shixiang Xu, Wenguo Tao, Jiasheng Zhao, Zhenlu Hu, Guojie Gao, Fengxin RSC Adv Chemistry A composite material of graphene (G) and polydopamine (PDA) on a copper (Cu) substrate (G/PDA@Cu) was fabricated successfully by sequential immersion deposition in a dopamine solution and an aqueous graphene oxide suspension before annealing. Optimum preparation conditions were explored by the orthogonal experimental method. The morphology and chemical composition of G/PDA@Cu were studied systematically by a series of characterization techniques. The thermal-conductive performance was evaluated by a laser flash thermal analyser. The thermal conductivity of G/PDA@Cu was 519.43 W m(−1) K(−1), which is ultrahigh and 30.50% higher than that of the Cu substrate. The adhesion force between G/PDA and the Cu substrate was 4.18 mN, which means that G bonds to the Cu substrate tightly. The model simulation also showed that G/PDA@Cu exhibits excellent thermal conductivity, allowing it to play a significant role in the thermal management of advanced electronic chips. The thermal-conductive devices using this material were prepared for practical applications. The Royal Society of Chemistry 2021-10-27 /pmc/articles/PMC9042715/ /pubmed/35494770 http://dx.doi.org/10.1039/d1ra05252g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Shuguang
Hou, Xiaomin
Lu, Shixiang
Xu, Wenguo
Tao, Jiasheng
Zhao, Zhenlu
Hu, Guojie
Gao, Fengxin
Fabrication and simulation of a layered ultrahigh thermal conductive material made of self-assembled graphene and polydopamine on a copper substrate
title Fabrication and simulation of a layered ultrahigh thermal conductive material made of self-assembled graphene and polydopamine on a copper substrate
title_full Fabrication and simulation of a layered ultrahigh thermal conductive material made of self-assembled graphene and polydopamine on a copper substrate
title_fullStr Fabrication and simulation of a layered ultrahigh thermal conductive material made of self-assembled graphene and polydopamine on a copper substrate
title_full_unstemmed Fabrication and simulation of a layered ultrahigh thermal conductive material made of self-assembled graphene and polydopamine on a copper substrate
title_short Fabrication and simulation of a layered ultrahigh thermal conductive material made of self-assembled graphene and polydopamine on a copper substrate
title_sort fabrication and simulation of a layered ultrahigh thermal conductive material made of self-assembled graphene and polydopamine on a copper substrate
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9042715/
https://www.ncbi.nlm.nih.gov/pubmed/35494770
http://dx.doi.org/10.1039/d1ra05252g
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