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Room-Temperature H2 Gas Sensing Characterization of Graphene-Doped Porous Silicon via a Facile Solution Dropping Method.
Eom, Nu Si A; Cho, Hong-Baek; Song, Yoseb; Lee, Woojin; Sekino, Tohru; Choa, Yong-Ho.
Afiliação
  • Eom NSA; Department of Fusion Chemical Engineering, Hanyang University, Ansan 15588, Korea. djafntldk@hanmail.net.
  • Cho HB; Department of Fusion Chemical Engineering, Hanyang University, Ansan 15588, Korea. hongbaek27@gmail.com.
  • Song Y; Department of Fusion Chemical Engineering, Hanyang University, Ansan 15588, Korea. licanen@nate.com.
  • Lee W; Process Development Team, Semiconductor R&D Center, Samsung Electronics Co., Ltd., Samsungjeonja-ro 1, Hwaseong, Gyeonggi-do 445-330, Korea. woojina.lee@samsung.com.
  • Sekino T; The Institute of Scientific and Industrial Research, Osaka University, 8-1 Mihogaoka, Ibaraki, Osaka 567-0047, Japan. sekino@sanken.osaka-u.ac.jp.
  • Choa YH; Department of Fusion Chemical Engineering, Hanyang University, Ansan 15588, Korea. choa15@hanyang.ac.kr.
Sensors (Basel) ; 17(12)2017 Nov 28.
Article em En | MEDLINE | ID: mdl-29182573
ABSTRACT
In this study, a graphene-doped porous silicon (G-doped/p-Si) substrate for low ppm H2 gas detection by an inexpensive synthesis route was proposed as a potential noble graphene-based gas sensor material, and to understand the sensing mechanism. The G-doped/p-Si gas sensor was synthesized by a simple capillary force-assisted solution dropping method on p-Si substrates, whose porosity was generated through an electrochemical etching process. G-doped/p-Si was fabricated with various graphene concentrations and exploited as a H2 sensor that was operated at room temperature. The sensing mechanism of the sensor with/without graphene decoration on p-Si was proposed to elucidate the synergetic gas sensing effect that is generated from the interface between the graphene and p-type silicon.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2017 Tipo de documento: Article