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用于提高 GaN 发光二极管的光功率和热稳定性的石墨烯透明电极。

Graphene transparent electrode for enhanced optical power and thermal stability in GaN light-emitting diodes.

机构信息

Creative Research Center for Graphene Electronics, Electronics and Telecommunications Research Institute, Daejeon, Korea.

出版信息

Nanotechnology. 2013 Feb 22;24(7):075202. doi: 10.1088/0957-4484/24/7/075202. Epub 2013 Jan 28.

Abstract

We report an improvement of the optical power and thermal stability of GaN LEDs using a chemically doped graphene transparent conducting layer (TCL) and a low-resistance contact structure. In order to obtain low contact resistance between the TCL and p-GaN surface, a patterned graphene TCL with Cr/Au electrodes is suggested. A bi-layer patterning method of a graphene TCL was utilized to prevent the graphene from peeling off the p-GaN surface. To improve the work function and the sheet resistance of graphene, CVD (chemical vapor deposition) graphene was doped by a chemical treatment using a HNO(3) solution. The effect of the contact resistance on the power degradation of LEDs at a high injection current level was investigated. In addition, the enhancement of the optical power via an increase in the current spreading and a decrease in the potential barrier of the graphene TCL was investigated.

摘要

我们报告了一种使用化学掺杂石墨烯透明导电层 (TCL) 和低电阻接触结构来提高 GaN LED 的光功率和热稳定性的方法。为了在 TCL 和 p-GaN 表面之间获得低接触电阻,建议使用带有 Cr/Au 电极的图案化石墨烯 TCL。利用石墨烯 TCL 的双层图案化方法来防止石墨烯从 p-GaN 表面剥落。为了提高石墨烯的功函数和方阻值,使用 HNO(3)溶液进行化学处理对 CVD(化学气相沉积)石墨烯进行了掺杂。研究了接触电阻对高注入电流水平下 LED 功率下降的影响。此外,还研究了通过增加电流扩展和降低石墨烯 TCL 的势垒来提高光功率。

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