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等离子体诱导的石墨烯掺杂。

Plasmon-induced doping of graphene.

机构信息

Department of Electrical and Computer Engineering, Laboratory for Nanophotonics, Rice University, Houston, Texas 77005, United States.

出版信息

ACS Nano. 2012 Nov 27;6(11):10222-8. doi: 10.1021/nn304028b. Epub 2012 Sep 27.

Abstract

A metallic nanoantenna, under resonant illumination, injects nonequilibrium hot electrons into a nearby graphene structure, effectively doping the material. A prominent change in carrier density was observed for a plasmonic antenna-patterned graphene sheet following laser excitation, shifting the Dirac point, as determined from the gate-controlled transport characteristic. The effect is due to hot electron generation resulting from the decay of the nanoantenna plasmon following resonant excitation. The effect is highly tunable, depending on the resonant frequency of the plasmonic antenna, as well as on the incident laser power. Hot electron-doped graphene represents a new type of hybrid material that shows great promise for optoelectronic device applications.

摘要

在共振激发下,金属纳米天线将非平衡热电子注入附近的石墨烯结构中,从而有效地对材料进行掺杂。激光激发后,等离子体天线图案化的石墨烯片的载流子密度发生了显著变化,狄拉克点发生了移动,这可以从栅极控制的输运特性中确定。这种效应是由于纳米天线等离子体在共振激发后衰减而产生的热电子生成所致。该效应高度可调,取决于等离子体天线的共振频率以及入射激光功率。掺杂热电子的石墨烯代表了一种新型的混合材料,有望在光电器件应用中得到广泛应用。

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