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Graphene and graphene-based materials for advanced sensor applications

Grant number: 18/15842-0
Support Opportunities:Scholarships abroad - Research
Effective date (Start): January 17, 2019
Effective date (End): January 16, 2020
Field of knowledge:Physical Sciences and Mathematics - Physics - Condensed Matter Physics
Principal Investigator:Ana Luiza Cardoso Pereira
Grantee:Ana Luiza Cardoso Pereira
Host Investigator: Dusan Losic
Host Institution: Faculdade de Ciências Aplicadas (FCA). Universidade Estadual de Campinas (UNICAMP). Limeira , SP, Brazil
Research place: University of Adelaide, Australia  

Abstract

Graphene based sensors have been attracting much attention recently due to unique properties and sensing performance of graphene, to room-temperature working conditions, and enormous application potential. In this project, to be developed at the Graphene Research Hub at the University of Adelaide, we will investigate the sensing properties of graphene and new graphene-based materials, focusing on gas/vapor advanced sensor applications. Graphene shows high sensitivity to electron charge distribution perturbations that arise when target species adsorb on its surface, changing therefore the sensing response of graphene-based resistive gas sensors. Prof. Dusan Losic's group at the Graphene Research Hub has great experience in assembling graphene into desired architectures of macroscopic scale by various developed strategies, including production and modification of high performance graphene-polymer nanocomposites, graphene thin films, and new graphene-based 2D and 3D printing techniques. We propose here to study and characterize the electronic and sensing properties of different graphene assembled structures produced in the group, for advanced gas sensor applications; including the investigation of how disorder affects and changes the conductance and sensitivity of the sensors based on these materials.

News published in Agência FAPESP Newsletter about the scholarship:
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Scientific publications
(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)
TUNG, TRAN T.; TRAN, MANH T.; PEREIRA, ANA L. C.; CORDEIRO, CRISTIANO M. B.; NGUYEN, DUC D.; TAI, NYAN-HWA; TRAN, VAN V.; HSU, CHIA-CHEN; JOSHI, PRERNA; YOSHIMURA, MASAMICHI; et al. Graphene woven fabric-polydimethylsiloxane piezoresistive films for smart multi-stimuli responses. COLLOIDS AND SURFACES B-BIOINTERFACES, v. 221, p. 11-pg., . (18/10409-7, 18/15842-0)
YU, LE; PEREIRA, ANA L. C.; TRAN, DIANA N. H.; SANTOS, ALEXANDRE M. C.; LOSIC, DUSAN. Bismuth Oxide Films for X-ray shielding: Effects of particle size and structural morphology. Materials Chemistry and Physics, v. 260, . (18/15842-0)
NINE, MD J.; YU, LE; PEREIRA, ANA L. C.; BATMUNKH, MUNKHBAYAR; HASSAN, KAMRUL; SANTOS, ALEXANDRE M. C.; TUNG, TRAN T.; LOSIC, DUSAN. Laminated antimonene as an alternative and efficient shielding strategy against X-ray radiation. APPLIED MATERIALS TODAY, v. 29, p. 8-pg., . (18/15842-0)

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