Understanding piezoelectric characteristics of PHEMA-based hydrogel nanocomposites as soft self-powered electronics
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- Type
- article
- Published
- 2018-05-04
- Cited by
- 46
- References
- 51
- Access
- Open access
- OpenAlex
- https://openalex.org/W2800139196
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:139565840
Keywords
Nanocomposite, Materials science, Piezoelectricity, Electronics, Biocompatibility
References
- Polyvinylidene Fluoride (PVDF)/Polyacrylonitrile (PAN)/Carbon Nanotube Nanocomposites for Energy Storage and Conversion
- Capacitance performances of supramolecular hydrogels based on conducting polymers
- A methodology to analyse and simulate mechanical characteristics of poly(2‐hydroxyethyl methacrylate) hydrogel
- Carbon nanotube based biosensors
- Small but strong: A review of the mechanical properties of carbon nanotube–polymer composites
- Giant osmotic energy conversion measured in a single transmembrane boron nitride nanotube
- Modelling and simulation of hydro-gel growth mechanism by analysis of experimental data
- Piezoelectric properties of graphene oxide: A first-principles computational study
- Mechanical, electrical, piezoelectric and electro-active behavior of aligned multi-walled carbon nanotube/cellulose composites
- Microstructural and mechanical characteristics of PHEMA-based nanofibre-reinforced hydrogel under compression
- Bio‐Inspired Two‐Dimensional Nanofluidic Generators Based on a Layered Graphene Hydrogel Membrane
- 1.6 V nanogenerator for mechanical energy harvesting using PZT nanofibers.
- Biomimetic smart nanopores and nanochannels.
- Inelastic behaviour of bacterial cellulose hydrogel: In aqua cyclic tests
- Piezoelectric nanogenerators – a review of nanostructured piezoelectric energy harvesters
- Proposed method of intracordal injection and gelation of poly (vinyl alcohol) solution in vocal cords: polymer considerations.
- A mechanical metamaterial made from a DNA hydrogel.
- 25th Anniversary Article: Designer Hydrogels for Cell Cultures: A Materials Selection Guide
- Label-free DNA biosensors based on functionalized carbon nanotube field effect transistors.
- 25th Anniversary Article: Rational Design and Applications of Hydrogels in Regenerative Medicine
Cited by
- Polystyrene Foam with High Cell Density and Small Cell Size by Compression-Injection Molding and Core Back Foaming Technique: Evolution of Cells in Cavity
- Multifunctional piezoelectric elastomer composites for smart biomedical or wearable electronics
- Diffusion of Resveratrol in Silica Alcogels
- Overview of Ionogels in Flexible Electronics
- Printed hydrogel nanocomposites: fine-tuning nanostructure for anisotropic mechanical and conductive properties
- Differentiation between cellulose acetate and polyvinyl alcohol nanofibrous scaffolds containing magnetite nanoparticles/graphene oxide via pulsed laser ablation technique for tissue engineering applications
- Hydrogel sensors with pH sensitivity
- High performance fluorinated polyethylene propylene ferroelectrets with an air-filled parallel-tunnel structure
- Covering soy polysaccharides gel on the surface of β-cyclodextrin-based metal–organic frameworks
- Ultra-sensitive flexible sandwich structural strain sensors based on a silver nanowire supported PDMS/PVDF electrospun membrane substrate
- Polypyrrole/reduced graphene aerogel film for wearable piezoresisitic sensors with high sensing performances
- Development of Conductive Hydrogels for Fabricating Flexible Strain Sensors.
- A highly stretchable, sensing durability, transparent, and environmentally stable ion conducting hydrogel strain sensor built by interpenetrating Ca2+-SA and glycerol-PVA double physically cross-linked networks
- Analytical Modeling and Experimental Validation of a Gelatin-based Shape Sensor for Soft Robots
- Synthesis, potential of hydrogen activity, biological and chemical stability of zinc oxide nanoparticle preparation by sol–gel: A review
- Cellulose hydrogel-based biodegradable and recyclable magnetoelectric composites for electromechanical conversion.
- Engineering Dental Tissues Using Biomaterials with Piezoelectric Effect: Current Progress and Future Perspectives
- A Review on PVDF Nanofibers in Textiles for Flexible Piezoelectric Sensors
- A Highly Transparent Self-Powered Touch Sensor Based on Hierarchical (Micro-Nano) Cu Grid on Polyethylene Terephthalate Composite Electrodes for Smart Wear
- Tailoring the Electron Trapping Effect of a Biocompatible Triboelectric Hydrogel by Graphene Oxide Incorporation towards Self-Powered Medical Electronics
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