High-Performance Graphene Nanowalls/Si Self-Powered Photodetectors with HfO2 as an Interfacial Layer

Author:

Shen Yuheng12,Li Yulin12,Chen Wencheng12,Jiang Sijie1,Li Cheng1ORCID,Cheng Qijin12

Affiliation:

1. School of Electronic Science and Engineering, Xiamen University, Xiamen 361102, China

2. Shenzhen Research Institute of Xiamen University, Xiamen University, Shenzhen 518000, China

Abstract

Graphene/silicon (Si) heterojunction photodetectors are widely studied in detecting of optical signals from near-infrared to visible light. However, the performance of graphene/Si photodetectors is limited by defects created in the growth process and surface recombination at the interface. Herein, a remote plasma-enhanced chemical vapor deposition is introduced to directly grow graphene nanowalls (GNWs) at a low power of 300 W, which can effectively improve the growth rate and reduce defects. Moreover, hafnium oxide (HfO2) with thicknesses ranging from 1 to 5 nm grown by atomic layer deposition has been employed as an interfacial layer for the GNWs/Si heterojunction photodetector. It is shown that the high-k dielectric layer of HfO2 acts as an electron-blocking and hole transport layer, which minimizes the recombination and reduces the dark current. At an optimized thickness of 3 nm HfO2, a low dark current of 3.85 × 10−10, with a responsivity of 0.19 AW−1, a specific detectivity of 1.38 × 1012 as well as an external quantum efficiency of 47.1% at zero bias, can be obtained for the fabricated GNWs/HfO2/Si photodetector. This work demonstrates a universal strategy to fabricate high-performance graphene/Si photodetectors.

Funder

Natural Science Foundation of Fujian Province

Shenzhen Science and Technology Innovation Committee

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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