Dutta et al., 2018 - Google Patents
NiO@ SiO2/PVDF: A flexible polymer nanocomposite for a high performance human body motion-based energy harvester and tactile e-skin mechanosensorDutta et al., 2018
View PDF- Document ID
- 5175141539488017405
- Author
- Dutta B
- Kar E
- Bose N
- Mukherjee S
- Publication year
- Publication venue
- ACS Sustainable Chemistry & Engineering
External Links
Snippet
Advancement in self-powered portable and wearable electronics mostly depends on the realization of an efficient human activity-based energy harvester and electronic skin (e-skin)- mimicking tactile mechanosensing property of natural human skin. A human activity-based …
- 229920002981 polyvinylidene fluoride 0 title abstract description 206
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Dutta et al. | NiO@ SiO2/PVDF: A flexible polymer nanocomposite for a high performance human body motion-based energy harvester and tactile e-skin mechanosensor | |
Cao et al. | Piezoelectric nanogenerators derived self‐powered sensors for multifunctional applications and artificial intelligence | |
Liu et al. | Wireless single-electrode self-powered piezoelectric sensor for monitoring | |
Chandrasekaran et al. | Micro-scale to nano-scale generators for energy harvesting: Self powered piezoelectric, triboelectric and hybrid devices | |
Maity et al. | Self-powered human-health monitoring through aligned PVDF nanofibers interfaced skin-interactive piezoelectric sensor | |
Dudem et al. | Highly-flexible piezoelectric nanogenerators with silver nanowires and barium titanate embedded composite films for mechanical energy harvesting | |
Sultana et al. | Methylammonium lead iodide incorporated poly (vinylidene fluoride) nanofibers for flexible piezoelectric–pyroelectric nanogenerator | |
Zhang et al. | Fully rollable lead-free poly (vinylidene fluoride)-niobate-based nanogenerator with ultra-flexible nano-network electrodes | |
Alluri et al. | Scavenging biomechanical energy using high-performance, flexible BaTiO3 nanocube/PDMS composite films | |
Yang et al. | Liquid-metal-based super-stretchable and structure-designable triboelectric nanogenerator for wearable electronics | |
Rovisco et al. | Piezoelectricity enhancement of nanogenerators based on PDMS and ZnSnO3 nanowires through microstructuration | |
Kim et al. | Characterization of PI/PVDF-TrFE composite nanofiber-based triboelectric nanogenerators depending on the type of the electrospinning system | |
Alluri et al. | Flexible, hybrid piezoelectric film (BaTi (1–x) Zr x O3)/PVDF nanogenerator as a self-powered fluid velocity sensor | |
Fan et al. | Flexible nanogenerators for energy harvesting and self‐powered electronics | |
Wu et al. | Energy harvesters for wearable and stretchable electronics: from flexibility to stretchability | |
Seung et al. | Nanopatterned textile-based wearable triboelectric nanogenerator | |
Kar et al. | Ultraviolet-and microwave-protecting, self-cleaning e-skin for efficient energy harvesting and tactile mechanosensing | |
Sultana et al. | An effective electrical throughput from PANI supplement ZnS nanorods and PDMS-based flexible piezoelectric nanogenerator for power up portable electronic devices: an alternative of MWCNT filler | |
Alam et al. | An effective wind energy harvester of paper ash-mediated rapidly synthesized ZnO nanoparticle-interfaced electrospun PVDF fiber | |
Nie et al. | Flexible piezoelectric nanogenerators based on P (VDF-TrFE)/CsPbBr3 quantum dot composite films | |
Manchi et al. | Improved performance of nanogenerator via synergetic piezo/triboelectric effects of lithium niobate microparticles embedded composite films | |
Yun et al. | Piezo-triboelectric hybridized nanogenerator embedding MXene based bifunctional conductive filler in polymer matrix for boosting electrical power | |
Karumuthil et al. | Poly (vinylidene fluoride-trifluoroethylene)-ZnO nanoparticle composites on a flexible poly (dimethylsiloxane) substrate for energy harvesting | |
Zhao et al. | Flexible semitransparent energy harvester with high pressure sensitivity and power density based on laterally aligned PZT single-crystal nanowires | |
Kar et al. | MWCNT@ SiO2 heterogeneous nanofiller-based polymer composites: a single key to the high-performance piezoelectric nanogenerator and X-band microwave shield |