Graphite nanobelts characterization and application for blood pulse sensing★

In this work, graphite nanobelts-based films as a promising material for applications in flexible blood pulse sensors with low power consumption are studied. A modified Langmuir Blodgett method used here for the sensor fabrication, is a reliable, simple and scalable technique allowing for controlled...

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Main Authors: Alaferdov Andrei V., Savu Raluca, Canesqui Mara A., Bortolucci Emilio, Joanni Ednan, Peressinoto Joao, Moshkalev Stanislav A.
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:International Journal of Metrology and Quality Engineering
Subjects:
Online Access:https://doi.org/10.1051/ijmqe/2017003
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author Alaferdov Andrei V.
Savu Raluca
Canesqui Mara A.
Bortolucci Emilio
Joanni Ednan
Peressinoto Joao
Moshkalev Stanislav A.
author_facet Alaferdov Andrei V.
Savu Raluca
Canesqui Mara A.
Bortolucci Emilio
Joanni Ednan
Peressinoto Joao
Moshkalev Stanislav A.
author_sort Alaferdov Andrei V.
collection DOAJ
description In this work, graphite nanobelts-based films as a promising material for applications in flexible blood pulse sensors with low power consumption are studied. A modified Langmuir Blodgett method used here for the sensor fabrication, is a reliable, simple and scalable technique allowing for controlled deposition of conducting films with desired electrical properties. The nanobelts, deposited over oxidized silicon or onto flexible polydimethylsiloxane substrates, were morphologically and electrically characterized. The response of the sensors to blood pulses measured on wrists and necks of two different persons (a male and a female) and the ways of the sensor response optimization are discussed.
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spelling doaj.art-f33c06f5adc44c85bb0345f8307edd5a2022-12-21T19:16:53ZengEDP SciencesInternational Journal of Metrology and Quality Engineering2107-68472017-01-018510.1051/ijmqe/2017003ijmqe160058Graphite nanobelts characterization and application for blood pulse sensing★Alaferdov Andrei V.Savu RalucaCanesqui Mara A.Bortolucci EmilioJoanni EdnanPeressinoto JoaoMoshkalev Stanislav A.In this work, graphite nanobelts-based films as a promising material for applications in flexible blood pulse sensors with low power consumption are studied. A modified Langmuir Blodgett method used here for the sensor fabrication, is a reliable, simple and scalable technique allowing for controlled deposition of conducting films with desired electrical properties. The nanobelts, deposited over oxidized silicon or onto flexible polydimethylsiloxane substrates, were morphologically and electrically characterized. The response of the sensors to blood pulses measured on wrists and necks of two different persons (a male and a female) and the ways of the sensor response optimization are discussed.https://doi.org/10.1051/ijmqe/2017003GrapheneGraphiteNanobeltsBlood pressure sensor
spellingShingle Alaferdov Andrei V.
Savu Raluca
Canesqui Mara A.
Bortolucci Emilio
Joanni Ednan
Peressinoto Joao
Moshkalev Stanislav A.
Graphite nanobelts characterization and application for blood pulse sensing★
International Journal of Metrology and Quality Engineering
Graphene
Graphite
Nanobelts
Blood pressure sensor
title Graphite nanobelts characterization and application for blood pulse sensing★
title_full Graphite nanobelts characterization and application for blood pulse sensing★
title_fullStr Graphite nanobelts characterization and application for blood pulse sensing★
title_full_unstemmed Graphite nanobelts characterization and application for blood pulse sensing★
title_short Graphite nanobelts characterization and application for blood pulse sensing★
title_sort graphite nanobelts characterization and application for blood pulse sensing★
topic Graphene
Graphite
Nanobelts
Blood pressure sensor
url https://doi.org/10.1051/ijmqe/2017003
work_keys_str_mv AT alaferdovandreiv graphitenanobeltscharacterizationandapplicationforbloodpulsesensing
AT savuraluca graphitenanobeltscharacterizationandapplicationforbloodpulsesensing
AT canesquimaraa graphitenanobeltscharacterizationandapplicationforbloodpulsesensing
AT bortolucciemilio graphitenanobeltscharacterizationandapplicationforbloodpulsesensing
AT joanniednan graphitenanobeltscharacterizationandapplicationforbloodpulsesensing
AT peressinotojoao graphitenanobeltscharacterizationandapplicationforbloodpulsesensing
AT moshkalevstanislava graphitenanobeltscharacterizationandapplicationforbloodpulsesensing