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Inkjet-Printed Electronics on Paper for RF Identification (RFID) and Sensing
by
Kim, Sangkil
in
Biomonitoring
/ Carbon nanotubes
/ Cellulose
/ Composition
/ Conductors
/ Design and construction
/ Dielectric films
/ Electric properties
/ Electrical properties
/ Electronics
/ Glass substrates
/ Innovations
/ Integrated circuit fabrication
/ Internet of Things
/ Metallizing
/ Nanoparticles
/ Polymers
/ Radio frequency identification
/ Radio frequency identification (RFID)
/ Silver
/ Sintering
/ Solar energy
/ Substrate integrated waveguides
/ Thin films
/ Topology
2020
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Inkjet-Printed Electronics on Paper for RF Identification (RFID) and Sensing
by
Kim, Sangkil
in
Biomonitoring
/ Carbon nanotubes
/ Cellulose
/ Composition
/ Conductors
/ Design and construction
/ Dielectric films
/ Electric properties
/ Electrical properties
/ Electronics
/ Glass substrates
/ Innovations
/ Integrated circuit fabrication
/ Internet of Things
/ Metallizing
/ Nanoparticles
/ Polymers
/ Radio frequency identification
/ Radio frequency identification (RFID)
/ Silver
/ Sintering
/ Solar energy
/ Substrate integrated waveguides
/ Thin films
/ Topology
2020
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Inkjet-Printed Electronics on Paper for RF Identification (RFID) and Sensing
by
Kim, Sangkil
in
Biomonitoring
/ Carbon nanotubes
/ Cellulose
/ Composition
/ Conductors
/ Design and construction
/ Dielectric films
/ Electric properties
/ Electrical properties
/ Electronics
/ Glass substrates
/ Innovations
/ Integrated circuit fabrication
/ Internet of Things
/ Metallizing
/ Nanoparticles
/ Polymers
/ Radio frequency identification
/ Radio frequency identification (RFID)
/ Silver
/ Sintering
/ Solar energy
/ Substrate integrated waveguides
/ Thin films
/ Topology
2020
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Inkjet-Printed Electronics on Paper for RF Identification (RFID) and Sensing
Journal Article
Inkjet-Printed Electronics on Paper for RF Identification (RFID) and Sensing
2020
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Overview
The newly developed research area of inkjet-printed radio frequency (RF) electronics on cellulose-based and synthetic paper substrates is introduced in this paper. This review paper presents the electrical properties of the paper substrates, the printed silver nanoparticle-based thin films, the dielectric layers, and the catalyst-based metallization process. Numerous inkjet-printed microwave passive/ative systems on paper, such as a printed radio frequency identification (RFID) tag, an RFID-enabled sensor utilizing carbon nanotubes (CNTs), a substrate-integrated waveguide (SIW), fully printed vias, an autonomous solar-powered beacon oscillator (active antenna), and artificial magnetic conductors (AMC), are discussed. The reported technology could potentially act as the foundation for true “green” low-cost scalable wireless topologies for autonomous Internet-of-Things (IoT), bio-monitoring, and “smart skin” applications.
Publisher
MDPI AG
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