JOURNAL ARTICLE

Thermally reduced graphene oxide films as flexible lateral heat spreaders

Ningjing SongCheng‐Meng ChenChunxiang LüZhuo LiuQingqiang KongRong Cai

Year: 2014 Journal:   Journal of Materials Chemistry A Vol: 2 (39)Pages: 16563-16568   Publisher: Royal Society of Chemistry

Abstract

A thermally reduced graphene oxide film (r-GOF), with tailorable micro-structures and macro-properties, is fabricated by annealing a filtrated graphene oxide film (GOF) in a confined space. The structural evolution of the film at different annealing temperatures is systematically investigated, and further correlated to the thermal conductivity and mechanical performances. With the increase of temperature, more oxygen-containing functional groups are removed from the film by a simultaneous conversion from sp3 to sp2 carbon in the graphitic lattice. As the temperature reached 1200 °C, the r-GOF achieves an ultrahigh thermal conductivity of ca. 1043.5 W m−1 K−1, while 1000 °C is a critical temperature in enhancing the thermal conductivity. Moreover, G1200 exhibits excellent mechanical stiffness and flexibility with a high tensile strength (13.62 MPa) and Young's modulus (2.31 GPa). The combined conductivity and mechanical performances render the r-GOFs promising materials as flexible lateral heat spreaders for electronics.

Keywords:
Graphene Materials science Oxide Thermal conductivity Annealing (glass) Composite material Ultimate tensile strength Conductivity Elastic modulus Modulus Nanotechnology Chemistry Metallurgy

Metrics

258
Cited By
9.42
FWCI (Field Weighted Citation Impact)
40
Refs
0.99
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Thermal properties of materials
Physical Sciences →  Materials Science →  Materials Chemistry
Graphene research and applications
Physical Sciences →  Materials Science →  Materials Chemistry
Diamond and Carbon-based Materials Research
Physical Sciences →  Materials Science →  Materials Chemistry
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