Hierarchical Graphene-Carbon Fiber Composite Paper as a Flexible Lateral Heat Spreader
As a low dimensional crystal, graphene attracts great attention as heat dissipation material due to its unique thermal transfer property exceeding the limit of bulk graphite. In this contribution, flexible graphene–carbon fiber composite paper is fabricated by depositing graphene oxide into the carb...
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Published in | Advanced functional materials Vol. 24; no. 27; pp. 4222 - 4228 |
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Main Authors | , , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Blackwell Publishing Ltd
16.07.2014
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Subjects | |
Online Access | Get full text |
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Summary: | As a low dimensional crystal, graphene attracts great attention as heat dissipation material due to its unique thermal transfer property exceeding the limit of bulk graphite. In this contribution, flexible graphene–carbon fiber composite paper is fabricated by depositing graphene oxide into the carbon fiber precursor followed by carbonization. In this full‐carbon architecture, scaffold of one‐dimensional carbon fiber is employed as the structural component to reinforce the mechanical strength, while the hierarchically arranged two‐dimensional graphene in the framework provides a convenient pathway for in‐plane acoustic phonon transmission. The as‐obtained hierarchical carbon/carbon composite paper possesses ultra‐high in‐plane thermal conductivity of 977 W m−1 K−1 and favorable tensile strength of 15.3 MPa. The combined mechanical and thermal performances make the material highly desirable as lateral heat spreader for next‐generation commercial portable electronics.
Flexible graphene–carbon fiber composite paper with an ultra‐high thermal diffusivity of 5458 mm2 s−1, a very large thermal conductivity of 977 W m−1 K−1, and a tensile strength of 15.3 MPa is fabricated through facile filtration route, in which the close packed graphene nanosheets provide high thermal conductivity, while carbon fiber acts as the structural scaffold to render excellent mechanical properties. |
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Bibliography: | Innovative Research Fund of ICC-CAS - No. 2012SCXQT03 istex:F1F29902D5CC921DA396E04FD22AD480F5C331F0 ArticleID:ADFM201304144 Shanxi Coal Transportation and Sales Group Co. Ltd - No. 2013WT103 Natural Science Foundation of China - No. 51302281 Innovative Research Fund of Taiyuan Science and Technology Bureau - No. 2012CXJD0510 ark:/67375/WNG-CMRL35M2-0 Natural Science Foundation of Shanxi Province - No. 2013011012-7 ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 |
ISSN: | 1616-301X 1616-3028 |
DOI: | 10.1002/adfm.201304144 |