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Surface functionalization of epitaxial graphene on SiC by ion irradiation for gas sensing application

Kaushik, Priya Darshni (författare)
Linköpings universitet,Halvledarmaterial,Tekniska fakulteten,Jamia Millia Islamia, India
Ivanov, Ivan Gueorguiev (författare)
Linköpings universitet,Halvledarmaterial,Tekniska fakulteten
Lin, Pin-Cheng (författare)
Linköpings universitet,Institutionen för fysik, kemi och biologi,Tekniska fakulteten
visa fler...
Kaur, Gurpreet (författare)
University of Delhi, India
Eriksson, Jens (författare)
Linköpings universitet,Tillämpad sensorvetenskap,Tekniska fakulteten
Lakshmi, G. B. V. S. (författare)
Interuniv Accelerator Centre, India
Avasthi, D. K. (författare)
Interuniv Accelerator Centre, India; Amity Institute Nanotechnol, India
Gupta, Vinay (författare)
University of Delhi, India
Aziz, Anver (författare)
Jamia Millia Islamia, India
Siddiqui, Azher M. (författare)
Jamia Millia Islamia, India
Syväjärvi, Mikael (författare)
Linköpings universitet,Halvledarmaterial,Tekniska fakulteten
Yazdi, Gholamreza (författare)
Linköpings universitet,Halvledarmaterial,Tekniska fakulteten
visa färre...
 (creator_code:org_t)
ELSEVIER SCIENCE BV, 2017
2017
Engelska.
Ingår i: Applied Surface Science. - : ELSEVIER SCIENCE BV. - 0169-4332 .- 1873-5584. ; 403, s. 707-716
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • In this work, surface functionalization of epitaxial graphene grown on silicon carbide was performed by ion irradiation to investigate their gas sensing capabilities. Swift heavy ion irradiation using 100 MeV silver ions at four varying fluences was implemented on epitaxial graphene to investigate morphological and structural changes and their effects on the gas sensing capabilities of graphene. Sensing devices are expected as one of the first electronic applications using graphene and most of them use functionalized surfaces to tailor a certain function. In our case, we have studied irradiation as a tool to achieve functionalization. Morphological and structural changes on epitaxial graphene layers were investigated by atomic force microscopy, Raman spectroscopy, Raman mapping and reflectance mapping. The surface morphology of irradiated graphene layers showed graphene folding, hillocks, and formation of wrinkles at highest fluence (2 x 10(13) ions/cm(2)). Raman spectra analysis shows that the graphene defect density is increased with increasing fluence, while Raman mapping and reflectance mapping show that there is also a reduction of monolayer graphene coverage. The samples were investigated for ammonia and nitrogen dioxide gas sensing applications. Sensors fabricated on pristine and irradiated samples showed highest gas sensing response at an optimal fluence. Our work provides new pathways for introducing defects in controlled manner in epitaxial graphene, which can be used not only for gas sensing application but also for other applications, such as electrochemical, biosensing, magnetosensing and spintronic applications. (C) 2017 Elsevier B.V. All rights reserved.

Ämnesord

NATURVETENSKAP  -- Kemi -- Materialkemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences -- Materials Chemistry (hsv//eng)

Nyckelord

Epitaxial graphene; Surface functionalization; Ion irradiation; Gas sensors

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