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激光定义功能化石墨烯光电探测器中的非凡线性动态范围。

Extraordinary linear dynamic range in laser-defined functionalized graphene photodetectors.

机构信息

Centre for Graphene Science, College of Engineering, Mathematics and Physical Sciences, University of Exeter, EX4 4QL Exeter, UK.

Institut de Ciències Fotòniques (ICFO), Mediterranean Technology Park, 08860 Castelldefels, Barcelona, Spain.

出版信息

Sci Adv. 2017 May 26;3(5):e1602617. doi: 10.1126/sciadv.1602617. eCollection 2017 May.

Abstract

Graphene-based photodetectors have demonstrated mechanical flexibility, large operating bandwidth, and broadband spectral response. However, their linear dynamic range (LDR) is limited by graphene's intrinsic hot-carrier dynamics, which causes deviation from a linear photoresponse at low incident powers. At the same time, multiplication of hot carriers causes the photoactive region to be smeared over distances of a few micrometers, limiting the use of graphene in high-resolution applications. We present a novel method for engineering photoactive junctions in FeCl-intercalated graphene using laser irradiation. Photocurrent measured at these planar junctions shows an extraordinary linear response with an LDR value at least 4500 times larger than that of other graphene devices (44 dB) while maintaining high stability against environmental contamination without the need for encapsulation. The observed photoresponse is purely photovoltaic, demonstrating complete quenching of hot-carrier effects. These results pave the way toward the design of ultrathin photodetectors with unprecedented LDR for high-definition imaging and sensing.

摘要

基于石墨烯的光电探测器具有机械柔韧性、大的工作带宽和宽的光谱响应。然而,它们的线性动态范围(LDR)受到石墨烯固有热载流子动力学的限制,这导致在低入射功率下偏离线性光响应。同时,热载流子的倍增会使光活性区域在几微米的距离上扩散,限制了石墨烯在高分辨率应用中的使用。我们提出了一种使用激光辐照在 FeCl 插层石墨烯中工程化光活性结的新方法。在这些平面结中测量的光电流显示出非凡的线性响应,其 LDR 值比其他石墨烯器件(44dB)至少大 4500 倍,同时保持了对环境污染的高稳定性,无需封装。观察到的光响应是纯粹的光伏效应,证明完全抑制了热载流子效应。这些结果为设计具有前所未有的 LDR 的超薄光电探测器铺平了道路,可用于高清成像和传感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dc9/5446211/40095f1cb920/1602617-F1.jpg

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