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A single-crystalline diamond X-ray detector based on direct sp3-to-sp2conversed graphene electrodes

Authors :
Yuan, Qilong
Liu, Linyue
Dai, Dan
Zhou, Yuhong
Liu, Ying
Yang, Mingyang
Qiu, Mengting
Jia, Zhenglin
Li, He
Nishimura, Kazhihito
Tian, Geng
Chee, Kuan W. A.
Du, Shiyu
Lin, Cheng-Te
Jiang, Nan
Ouyang, Xiaoping
Source :
Functional Diamond; December 2022, Vol. 2 Issue: 1 p94-102, 9p
Publication Year :
2022

Abstract

AbstractDiamond is an ultrawide bandgap semiconductor with excellent electronic and photonic properties, which has great potential applications in microelectronic and optoelectronic devices. As an allotrope of diamond, graphene also has many fantastic properties like diamond, which caught much attention in combing them together. In this work, a direct sp3-to-sp2conversion method was proposed to fabricate graphene layers on single crystal diamond by thermal treatment with Ni film catalyst. By optimizing the conversing conditions, a thin graphene layer with low sheet resistance was obtained on diamond. Based on this, an all-carbon sandwich structural graphene-diamond-graphene (GDG) detector was fabricated, which shows low dark current of 0.45 nA at 0.5 V μm−1applied electric field. The maximum sensitivity of this detector is obtained when the incident X-ray is 12 keV, with the value of 2.88 × 10−8C Gy−1. Moreover, the rise time and delay time of the GDG detector is about 1.2 and 22.8 ns, respectively, which are very close to that of diamond detector with Ti/Au electrode. The realization of the direct in-situsp3-to-sp2conversion on diamond shows a promising approach for fabricating diamond-based all-carbon electronic devices.

Details

Language :
English
ISSN :
26941112 and 26941120
Volume :
2
Issue :
1
Database :
Supplemental Index
Journal :
Functional Diamond
Publication Type :
Periodical
Accession number :
ejs62241713
Full Text :
https://doi.org/10.1080/26941112.2022.2099766