Cite this article:
Hui-Shan Wang, Lian-Wen Deng, Lei Li, Qiu-Juan Sun, Hong Xie, Hao-Min Wang. Electro-statically controllable graphene local heaterJ. Chin. Phys. B, 2018, 27(3): 037203.
| Hui-Shan Wang, Lian-Wen Deng, Lei Li, Qiu-Juan Sun, Hong Xie, Hao-Min Wang. Electro-statically controllable graphene local heaterJ. Chin. Phys. B, 2018, 27(3): 037203. |
Electro-statically controllable graphene local heater
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Abstract
We report on current-induced thermal power investigation of graphene nanostructure for potential local-heating applications. It is found that the efficiency of heating can be greatly improved if graphene is patterned into structures with narrow width and long channel. In a narrow graphene-ribbon, the Joule heating power exhibits an obvious dependence on the back-gate voltage. By monitoring Raman spectra, the temperature of graphene-ribbon can be determined. The temperature of graphene-ribbon is modulated by the electric field effect when the sample is sourced with a relatively high current. -
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