Development of inkjet printed strain sensors
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- Type
- article
- Published
- 2013-09-10
- Cited by
- 98
- References
- 32
- Access
- Open access
- OpenAlex
- https://openalex.org/W1971639383
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:108824427
Keywords
Gauge factor, Strain gauge, PEDOT:PSS, Inkwell, Materials science
References
- Demonstration of multi-analyte patterning using piezoelectric inkjet printing of multiple layers.
- IR absorption and reflectometric interference spectroscopy (RIfS) combined to a new sensing approach for gas analytes absorbed into thin polymer films.
- Ink-jet printed conducting polyaniline based flexible humidity sensor
- All inkjet printed system for strain measurement
- Inkjet-printed microfluidic multianalyte chemical sensing paper.
- Piezoresistive effect in spin-coated polyaniline thin films
- Inkjet-printed sensors: a useful approach for low cost, rapid prototyping [Instrumentation Notes]
- Electromechanical performance of poly(vinylidene fluoride)/carbon nanotube composites for strain sensor applications
- A Flexible Proximity Sensor Fully Fabricated by Inkjet Printing
- Piezoresistive silicon thin film sensor array for biomedical applications
- Development of a smart packaging for the monitoring of fish spoilage
- Spin-coated thin films of metal porphyrin-phthalocyanine blend for an optochemical sensor of alcohol vapours
- All-Inkjet-Printed Organic Thin-Film Transistors with Silver Gate, Source/Drain Electrodes
- Mechanical, electrical and electro-mechanical properties of thermoplastic elastomer styrene–butadiene–styrene/multiwall carbon nanotubes composites
- Piezoresistive polypropylene–carbon nanofiber composites as mechanical transducers
- Tactile image detection using a 1k-element silicon pressure sensor array
- Effect of filler dispersion on the electromechanical response of epoxy/vapor-grown carbon nanofiber composites
- Fabrication of multilayer passive and active electric components on polymer using inkjet printing and low temperature laser processing
- Investigation of microfabrication of biological sample arrays using piezoelectric and bubble-jet printing technologies
- All-Inkjet-Printed Organic Thin-Film Transistor Inverter on Flexible Plastic Substrate
Cited by
- A flexible strain sensor made of graphene nanoplatelets/polydimethylsiloxane nanocomposite
- Ag-TiNx electrodes deposited on piezoelectric poly(vinylidene fluoride) for biomedical sensor applications
- SVAS3: Strain Vector Aided Sensorization of Soft Structures
- Development of high sensitive polyaniline based piezoresistive films by conventional and green chemistry approaches
- Highly stretchable and sensitive unidirectional strain sensor via laser carbonization.
- Three‐Dimensional Inkjet‐Printed Interconnects using Functional Metallic Nanoparticle Inks
- Ti1−xAgx electrodes deposited on polymer based sensors
- Printed and flexible biosensor for antioxidants using interdigitated ink-jetted electrodes and gravure-deposited active layer.
- Progress of alternative sintering approaches of inkjet-printed metal inks and their application for manufacturing of flexible electronic devices
- Inkjet printed resistive strain gages on flexible substrates
- Towards inkjet printable conducting polymer artificial muscles
- Strain analysis on Ti1 − xAgx and Ag–TiNx electrodes deposited on polymer based sensors
- Piezoresistive response of spray-printed carbon nanotube/poly(vinylidene fluoride) composites
- MC3T3-E1 Cell Response to Ti1-xAgx and Ag-TiNx Electrodes Deposited on Piezoelectric Poly(vinylidene fluoride) Substrates for Sensor Applications.
- Properties and long-term behavior of nanoparticle based inkjet printed strain gauges
- All-inkjet-printed low-pass filters with adjustable cutoff frequency consisting of resistors, inductors and transistors for sensor applications
- All-printed strain sensors: Building blocks of the aircraft structural health monitoring system
- Inhomogeneous Deformations of Thermoplastics for Physically Adaptive Soft Matter Robots
- Development of ionic electroactive actuators with improved interfacial adhesion : towards the fabrication of inkjet printable artificial muscles
- Printed Motes for IoT Wireless Networks: State of the Art, Challenges, and Outlooks
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