Strong Correlation between Electrical and Thermal Transport Properties in Graphene/Graphite Films Beyond the Wiedemann-Franz Law

33 Pages Posted: 15 Feb 2022

See all articles by Meng Han

Meng Han

affiliation not provided to SSRN

Dasha Mao

Southern University of Science and Technology

Ting Liang

The Chinese University of Hong Kong

Enze Gao

affiliation not provided to SSRN

Xue Bai

affiliation not provided to SSRN

Xiaoliang Zeng

Chinese Academy of Sciences (CAS)

Rong Sun

Chinese Academy of Sciences (CAS)

Jianbin Xu

The Chinese University of Hong Kong

Abstract

Due to the unique band structure of graphene, defects in graphene and graphene-based structures often lead to complicated electrical transport properties, even at a very low level. Herein, we found a novel phase transition from semiconducting to metallic behaviors (a negative temperature coefficient of resistance to positive one) along with temperature increase in commercially available graphite/graphene films. Comparison studies on samples from different sources confirm the commonly existed transition in such graphite/graphene-based structures, but with variable transition temperatures ranging from about 320 K to 750 K. Further studies reveal that samples with lower absolute electrical resistance often obtains lower transition temperature, which is related to the defects level that strongly influence the carrier mobilities or concentrations and determines the electrical transport properties, especially at low temperatures. Along with the electrical transport properties, the thermal transport properties are simultaneously characterized from beyond the transition temperatures down to around 90 K. For the first time, an unpredicted linear relation between the transition temperature and the residual thermal reffusivity was observed, which are both strongly correlated to the defects level. The current work shed light on the understanding of electron and phonon transport behaviors and their correlation in graphite/graphene-based structures.

Keywords: graphene/graphite films, electrical and thermal transport properties, temperature coefficient of resistance, phase transition

Suggested Citation

Han, Meng and Mao, Dasha and Liang, Ting and Gao, Enze and Bai, Xue and Zeng, Xiaoliang and Sun, Rong and Xu, Jianbin, Strong Correlation between Electrical and Thermal Transport Properties in Graphene/Graphite Films Beyond the Wiedemann-Franz Law. Available at SSRN: https://ssrn.com/abstract=4015028 or http://dx.doi.org/10.2139/ssrn.4015028

Meng Han

affiliation not provided to SSRN ( email )

No Address Available

Dasha Mao

Southern University of Science and Technology ( email )

No 1088, xueyuan Rd.
Xili, Nanshan District
Shenzhen, 518055
China

Ting Liang

The Chinese University of Hong Kong ( email )

Enze Gao

affiliation not provided to SSRN ( email )

No Address Available

Xue Bai

affiliation not provided to SSRN ( email )

No Address Available

Xiaoliang Zeng

Chinese Academy of Sciences (CAS) ( email )

Rong Sun

Chinese Academy of Sciences (CAS) ( email )

Jianbin Xu (Contact Author)

The Chinese University of Hong Kong ( email )

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