Center For Nanoscale Systems, Cornell University,Ithaca, New York 14853, USA.
Nano Lett. 2010 Feb 10;10(2):562-6. doi: 10.1021/nl903451y.
We investigate the optoelectronic response of a graphene single-bilayer interface junction using photocurrent (PC) microscopy. We measure the polarity and amplitude of the PC while varying the Fermi level by tuning a gate voltage. These measurements show that the generation of PC is by a photothermoelectric effect. The PC displays a factor of approximately 10 increase at the cryogenic temperature as compared to room temperature. Assuming the thermoelectric power has a linear dependence on the temperature, the inferred graphene thermal conductivity from temperature dependent measurements has a T(1.5) dependence below approximately 100 K, which agrees with recent theoretical predictions.
我们使用光电流(PC)显微镜研究了石墨烯单双层界面结的光电响应。通过调节栅极电压来改变费米能级,我们测量了 PC 的极性和幅度。这些测量表明,PC 的产生是通过光热电效应。与室温相比,在低温下 PC 增加了约 10 倍。假设热电势与温度呈线性关系,从温度相关测量推断出的石墨烯热导率在低于约 100 K 的温度下具有 T(1.5)的依赖性,这与最近的理论预测一致。