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Room temperature Co-doped manganite/graphene sensor operating at high pulsed magnetic fields.
Lukose, Rasuole; Zurauskiene, Nerija; Stankevic, Voitech; Vagner, Milita; Plausinaitiene, Valentina; Niaura, Gediminas; Kersulis, Skirmantas; Balevicius, Saulius; Bolli, Eleonora; Mezzi, Alessio; Kaciulis, Saulius.
Afiliação
  • Lukose R; Department of Functional Materials and Electronics, Center for Physical Sciences and Technology, LT-10257, Vilnius, Lithuania. rasuole.lukose@ftmc.lt.
  • Zurauskiene N; Department of Functional Materials and Electronics, Center for Physical Sciences and Technology, LT-10257, Vilnius, Lithuania.
  • Stankevic V; Department of Electrical Engineering, Faculty of Electronics, Vilnius Gediminas Technical University, LT- 10223, Vilnius, Lithuania.
  • Vagner M; Department of Functional Materials and Electronics, Center for Physical Sciences and Technology, LT-10257, Vilnius, Lithuania.
  • Plausinaitiene V; Department of Electrical Engineering, Faculty of Electronics, Vilnius Gediminas Technical University, LT- 10223, Vilnius, Lithuania.
  • Niaura G; Department of Functional Materials and Electronics, Center for Physical Sciences and Technology, LT-10257, Vilnius, Lithuania.
  • Kersulis S; Institute of Chemistry, Faculty of Chemistry and Geosciences, Vilnius University, LT- 03225, Vilnius, Lithuania.
  • Balevicius S; Department of Functional Materials and Electronics, Center for Physical Sciences and Technology, LT-10257, Vilnius, Lithuania.
  • Bolli E; Institute of Chemistry, Faculty of Chemistry and Geosciences, Vilnius University, LT- 03225, Vilnius, Lithuania.
  • Mezzi A; Department of Organic Chemistry, Center for Physical Sciences and Technology, LT-10257, Vilnius, Lithuania.
  • Kaciulis S; Department of Functional Materials and Electronics, Center for Physical Sciences and Technology, LT-10257, Vilnius, Lithuania.
Sci Rep ; 9(1): 9497, 2019 Jul 01.
Article em En | MEDLINE | ID: mdl-31263164
The demand to increase the sensitivity to magnetic field in a broad magnetic field ranges has led to the research of novel materials for sensor applications. Therefore, the hybrid system consisting of two different magnetoresistive materials - nanostructured Co-doped manganite La1-xSrx(Mn1-yCoy)zO3 and single- and few-layer graphene - were combined and investigated as potential system for magnetic field sensing. The negative colossal magnetoresistance (CMR) of manganite-cobaltite and positive one of graphene gives the possibility to increase the sensitivity to magnetic field of the hybrid sensor. The performed magnetoresistance (MR) measurements of individual few layer (n = 1-5) graphene structures revealed the highest MR values for three-layer graphene (3LG), whereas additional Co-doping increased the MR values of nanostructured manganite films. The connection of 3LG graphene and Co-doped magnanite film in a voltage divider configuration significantly increased the sensitivity of the hybrid sensor at low and intermediate magnetic fields (1-2 T): 70 mV/VT of hybrid sensor in comparison with 56 mV/VT for 3LG and 12 mV/VT for Co-doped magnanite film, respectively, and broadened the magnetic field operation range (0.1-20) T of the produced sensor prototype.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article