Strain-Sensing Properties of Chitosan-Based Film Composites

The paper is devoted to strain-sensing properties of biopolymer composite film materials based on chitosan matrix with few-layered graphene as electrically conductive filler particles. The composite films were made by flow-coating method of colloidal dispersions of few-layered graphene in solution o...

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Published in:2021 XV International Scientific-Technical Conference on Actual Problems Of Electronic Instrument Engineering (APEIE) pp. 1 - 4
Main Authors: Kuznetsov, Vitalii A., Gapich, Dmitry I., Fedorov, Andrey A., Kholkhoev, Bato Ch, Buinov, Aleksandr S., Burdukovskii, Vitalii F.
Format: Conference Proceeding
Language:English
Published: IEEE 19-11-2021
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Abstract The paper is devoted to strain-sensing properties of biopolymer composite film materials based on chitosan matrix with few-layered graphene as electrically conductive filler particles. The composite films were made by flow-coating method of colloidal dispersions of few-layered graphene in solution of chitosan in water and lactic acid with polyvinylpyrrolidone or pluronic F108 as surfactants. The experimental samples about 70-100 µm in thickness were made with few-layered graphene content of 3% and 4% (wt.) for the composites with polyvinylpyrrolidone and 2 %, 3 %, 4 % and 5% (wt.) with pluronic F108. Electrical resistivity changed from 0.016 to 1300 Ohm-m depending on surfactant and few-layered graphene content. The samples were shown to have strain-sensing properties, the strain gauge factor to be from 1.3 to 5.7 depending on the filler content and surfactant used. The strain-sensing properties were studied with beams of uniform strength (in bending), the composites bonded to them with cyanoacrylate glue. The composites are perspective as strain gauges for health monitoring due to their biocompatibility.
AbstractList The paper is devoted to strain-sensing properties of biopolymer composite film materials based on chitosan matrix with few-layered graphene as electrically conductive filler particles. The composite films were made by flow-coating method of colloidal dispersions of few-layered graphene in solution of chitosan in water and lactic acid with polyvinylpyrrolidone or pluronic F108 as surfactants. The experimental samples about 70-100 µm in thickness were made with few-layered graphene content of 3% and 4% (wt.) for the composites with polyvinylpyrrolidone and 2 %, 3 %, 4 % and 5% (wt.) with pluronic F108. Electrical resistivity changed from 0.016 to 1300 Ohm-m depending on surfactant and few-layered graphene content. The samples were shown to have strain-sensing properties, the strain gauge factor to be from 1.3 to 5.7 depending on the filler content and surfactant used. The strain-sensing properties were studied with beams of uniform strength (in bending), the composites bonded to them with cyanoacrylate glue. The composites are perspective as strain gauges for health monitoring due to their biocompatibility.
Author Kuznetsov, Vitalii A.
Gapich, Dmitry I.
Fedorov, Andrey A.
Buinov, Aleksandr S.
Burdukovskii, Vitalii F.
Kholkhoev, Bato Ch
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  givenname: Vitalii A.
  surname: Kuznetsov
  fullname: Kuznetsov, Vitalii A.
  email: vitalii.a.kuznetsov@gmail.com
  organization: Novosibirsk State Technical University,Lab. of Low Temperature Physics Nikolaev Institute of Inorganic Chemistry,Dept. of Semiconductors and Microelectronics,Novosibirsk,Russia
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  givenname: Dmitry I.
  surname: Gapich
  fullname: Gapich, Dmitry I.
  email: dmitry.gapich@mail.ru
  organization: Novosibirsk State Technical University,Lab. of Low Temperature Physics Nikolaev Institute of Inorganic Chemistry,Dept. of Semiconductors and Microelectronics,Novosibirsk,Russia
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  givenname: Andrey A.
  surname: Fedorov
  fullname: Fedorov, Andrey A.
  email: andrew_fedorov_1999@mail.ru
  organization: Novosibirsk State Technical University,Lab. of Low Temperature Physics Nikolaev Institute of Inorganic Chemistry,Dept. of Semiconductors and Microelectronics,Novosibirsk,Russia
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  givenname: Bato Ch
  surname: Kholkhoev
  fullname: Kholkhoev, Bato Ch
  email: holh_bat@mail.ru
  organization: Baikal Institute of Nature Management,Lab. of Polymer Chemistry,Ulan - Ude,Russia
– sequence: 5
  givenname: Aleksandr S.
  surname: Buinov
  fullname: Buinov, Aleksandr S.
  email: buinov.aleksandr.96@mail.ru
  organization: Baikal Institute of Nature Management,Lab. of Polymer Chemistry,Ulan - Ude,Russia
– sequence: 6
  givenname: Vitalii F.
  surname: Burdukovskii
  fullname: Burdukovskii, Vitalii F.
  email: burdvit@mail.ru
  organization: Baikal Institute of Nature Management,Lab. of Polymer Chemistry,Ulan - Ude,Russia
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Snippet The paper is devoted to strain-sensing properties of biopolymer composite film materials based on chitosan matrix with few-layered graphene as electrically...
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SubjectTerms chitosan
colloidal dispersion
composite
few-layered graphene
Graphene
Instruments
Moisture
Particle measurements
pluronic F108
polyvinylpyrrolidone
Resistance
sensor
strain gauge
Strain measurement
Surfactants
Title Strain-Sensing Properties of Chitosan-Based Film Composites
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