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基于单层二硫化物中电可调 p-n 二极管的光电设备。

Optoelectronic devices based on electrically tunable p-n diodes in a monolayer dichalcogenide.

出版信息

Nat Nanotechnol. 2014 Apr;9(4):262-7. doi: 10.1038/nnano.2014.25. Epub 2014 Mar 9.

Abstract

The p-n junction is the functional element of many electronic and optoelectronic devices, including diodes, bipolar transistors, photodetectors, light-emitting diodes and solar cells. In conventional p-n junctions, the adjacent p- and n-type regions of a semiconductor are formed by chemical doping. Ambipolar semiconductors, such as carbon nanotubes, nanowires and organic molecules, allow for p-n junctions to be configured and modified by electrostatic gating. This electrical control enables a single device to have multiple functionalities. Here, we report ambipolar monolayer WSe2 devices in which two local gates are used to define a p-n junction within the WSe2 sheet. With these electrically tunable p-n junctions, we demonstrate both p-n and n-p diodes with ideality factors better than 2. Under optical excitation, the diodes demonstrate a photodetection responsivity of 210 mA W(-1) and photovoltaic power generation with a peak external quantum efficiency of 0.2%, promising values for a nearly transparent monolayer material in a lateral device geometry. Finally, we demonstrate a light-emitting diode based on monolayer WSe2. These devices provide a building block for ultrathin, flexible and nearly transparent optoelectronic and electronic applications based on ambipolar dichalcogenide materials.

摘要

p-n 结是许多电子和光电子设备的功能元件,包括二极管、双极晶体管、光电探测器、发光二极管和太阳能电池。在传统的 p-n 结中,半导体的相邻 p 型和 n 型区域是通过化学掺杂形成的。 例如碳纳米管、纳米线和有机分子等双极半导体允许通过静电门控来配置和修改 p-n 结。这种电控制使单个设备具有多种功能。在这里,我们报告了在其中使用两个局部门来在 WSe2 片内定义 p-n 结的双极单层 WSe2 器件。 通过这些电可调 p-n 结,我们展示了具有优于 2 的理想因子的 p-n 和 n-p 二极管。 在光激发下,二极管表现出 210 mA W(-1)的光探测响应率和 0.2%的峰值外量子效率的光伏发电,对于横向器件几何形状的几乎透明的单层材料来说,这是有希望的值。 最后,我们展示了基于单层 WSe2 的发光二极管。 这些器件为基于双极二维材料的超薄、灵活和几乎透明的光电和电子应用提供了构建模块。

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