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  5. Interface Engineering-Assisted 3D-Graphene/Germanium Heterojunction for High-Performance Photodetectors

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Article
en
2020

Interface Engineering-Assisted 3D-Graphene/Germanium Heterojunction for High-Performance Photodetectors

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en
2020
Vol 12 (13)
Vol. 12
DOI: 10.1021/acsami.0c02485

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Paul Kim Ho Chu
Paul Kim Ho Chu

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Menghan Zhao
Zhongying Xue
Wei Zhu
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Abstract

Three-dimensional graphene (3D-Gr) with excellent light absorption properties has received enormous interest, but in conventional processes to prepare 3D-Gr, amorphous carbon layers are inevitably introduced as buffer layers that may degrade the performance of graphene-based devices. Herein, 3D-Gr is prepared on germanium (Ge) using two-dimensional graphene (2D-Gr) as the buffer layer. 2D-Gr as the buffer layer facilitates the in situ synthesis of 3D-Gr on Ge by plasma-enhanced chemical vapor deposition (PECVD) by promoting 2D-Gr nucleation and reducing the barrier height. The growth mechanism is investigated and described. The enhanced light absorption as confirmed by theoretical calculation and 3D-Gr/2D-Gr/Ge with a Schottky junction improves the performance of optoelectronic devices without requiring pre- and post-transfer processes. The photodetector constructed with 3D-Gr/2D-Gr/Ge shows an excellent responsivity of 1.7 A W-1 and detectivity 3.42 × 1014 cm Hz1/2 W-1 at a wavelength of 1550 nm. This novel hybrid structure that incorporates 3D- and 2D-Gr into Ge-based integrated circuits and photodetectors delivers excellent performance and has large commercial potential.

How to cite this publication

Menghan Zhao, Zhongying Xue, Wei Zhu, Gang Wang, Shiwei Tang, Zhiduo Liu, Qinglei Guo, Da Chen, Paul Kim Ho Chu, Guqiao Ding, Zengfeng Di (2020). Interface Engineering-Assisted 3D-Graphene/Germanium Heterojunction for High-Performance Photodetectors. , 12(13), DOI: https://doi.org/10.1021/acsami.0c02485.

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Publication Details

Type

Article

Year

2020

Authors

11

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acsami.0c02485

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