Jiang et al., 2018 - Google Patents
Aligned P (VDF-TrFE) nanofibers for enhanced piezoelectric directional strain sensingJiang et al., 2018
View HTML- Document ID
- 14084155585396297549
- Author
- Jiang Y
- Gong L
- Hu X
- Zhao Y
- Chen H
- Feng L
- Zhang D
- Publication year
- Publication venue
- Polymers
External Links
Snippet
Piezoelectric poly (vinylidene fluoride-trifluoroethylene)(P (VDF-TrFE)) nanofibers fabricated by electrospinning have drawn increasing levels of attention in the fields of flexible sensors and nanogenerators. However, the directional dependence of piezoelectricity of electrospun …
- 239000002121 nanofiber 0 title abstract description 154
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Jiang et al. | Aligned P (VDF-TrFE) nanofibers for enhanced piezoelectric directional strain sensing | |
Wu et al. | Piezoelectric response of aligned electrospun polyvinylidene fluoride/carbon nanotube nanofibrous membranes | |
Wang et al. | Tactile-sensing based on flexible PVDF nanofibers via electrospinning: a review | |
Khan et al. | Sensitive and flexible polymeric strain sensor for accurate human motion monitoring | |
Guo et al. | Composites, fabrication and application of polyvinylidene fluoride for flexible electromechanical devices: A review | |
Kim et al. | P (VDF-TrFE) film on PDMS substrate for energy harvesting applications | |
Shehata et al. | Static-aligned piezoelectric poly (vinylidene fluoride) electrospun nanofibers/MWCNT composite membrane: Facile method | |
Li et al. | Sensitivity of pressure sensors enhanced by doping silver nanowires | |
You et al. | A flexible piezoelectric nanogenerator based on aligned P (VDF-TrFE) nanofibers | |
Yin et al. | Effects of solvent and electrospinning parameters on the morphology and piezoelectric properties of PVDF nanofibrous membrane | |
Sengupta et al. | Piezoresistive carbon nanofiber-based cilia-inspired flow sensor | |
Ji et al. | Fabrication and characterization of aligned flexible lead-free piezoelectric nanofibers for wearable device applications | |
Shehata et al. | Acoustic energy harvesting and sensing via electrospun PVDF nanofiber membrane | |
Liu et al. | Preparation of nanofibrous PVDF membrane by solution blow spinning for mechanical energy harvesting | |
Hu et al. | Bio-inspired flexible lateral line sensor based on P (VDF-TrFE)/BTO nanofiber mat for hydrodynamic perception | |
Khan et al. | Electro-active paper as a flexible mechanical sensor, actuator and energy harvesting transducer: A review | |
Liu et al. | Novel flexible PVDF-TrFE and PVDF-TrFE/ZnO pressure sensor: fabrication, characterization and investigation | |
He et al. | High-aligned PVDF nanofibers with a high electroactive phase prepared by systematically optimizing the solution property and process parameters of electrospinning | |
Mrlík et al. | Comparative study of PVDF sheets and their sensitivity to mechanical vibrations: The role of dimensions, molecular weight, stretching and poling | |
Yen et al. | Development of flexible biceps tremors sensing chip of PVDF fibers with nano-silver particles by near-field electrospinning | |
Shehata et al. | Piezoresponse, mechanical, and electrical characteristics of synthetic spider silk nanofibers | |
Qin et al. | Lead-free Bi3. 15Nd0. 85Ti3O12 nanoplates filler-elastomeric polymer composite films for flexible piezoelectric energy harvesting | |
Nguyen et al. | Significant Electromechanical Characteristic Enhancement of Coaxial Electrospinning Core–Shell Fibers | |
Jiang et al. | Microstructure dependence of output performance in flexible PVDF piezoelectric nanogenerators | |
Feng et al. | Piezoelectric enhancement of piezoceramic nanoparticle-doped PVDF/PCL core-sheath fibers |