Multilevel Structure Engineered Lead‐Free Piezoceramics Enabling Breakthrough in Energy Harvesting Performance for Bioelectronics
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- Type
- article
- Published
- 2022-12-26
- Cited by
- 55
- References
- 51
- OpenAlex
- https://openalex.org/W4313257277
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:255222774
Keywords
Energy harvesting, Materials science, Piezoelectricity, Bioelectronics, Ceramic
References
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- Piezoelectric films for high frequency ultrasonic transducers in biomedical applications
- Resolving structural contributions to the electric-field-induced strain in lead-free (1 − x)Ba(Zr0.2Ti0.8)O3 − x(Ba0.7Ca0.3)TiO3 piezoceramics
- A Survey on Piezoelectric Ceramics for Generator Applications
- Ferroelectric solid solutions with morphotropic boundaries: Vanishing polarization anisotropy, adaptive, polar glass, and two-phase states
- Realization of high-energy density polycrystalline piezoelectric ceramics
- Potassium-sodium niobate lead-free piezoelectric materials: past, present, and future of phase boundaries.
- Thermodynamic theory of the lead zirconate-titanate solid solution system, part I: Phenomenology
- Triple-point-type morphotropic phase boundary based large piezoelectric Pb-free material—Ba(Ti0.8Hf0.2)O3-(Ba0.7Ca0.3)TiO3
- Lead-free piezoceramics
- (K, Na)NbO3‐Based Lead‐Free Piezoceramics: Fundamental Aspects, Processing Technologies, and Remaining Challenges
- Comparison of PZN-PT, PMN-PT single crystals and PZT ceramic for vibration energy harvesting
- Superior Piezoelectric Properties in Potassium–Sodium Niobate Lead‐Free Ceramics
- Giant piezoelectric voltage coefficient in grain-oriented modified PbTiO3 material
- Giant Piezoelectricity and High Curie Temperature in Nanostructured Alkali Niobate Lead-Free Piezoceramics through Phase Coexistence.
- Modelling and fabrication of porous sandwich layer barium titanate with improved piezoelectric energy harvesting figures of merit
- Composition-driven phase boundary and its energy harvesting performance of BCZT lead–free piezoelectric ceramic
- Simultaneously enhanced piezoelectric response and piezoelectric voltage coefficient in textured KNN‐based ceramics
- Lead-free piezoelectrics—The environmental and regulatory issues
Cited by
- Construction of Flexible Piezoceramic Array with Ultrahigh Piezoelectricity via a Hierarchical Design Strategy
- Recent advancements in piezoelectric energy harvesting for implantable medical devices
- Piezoelectric Elements with PVDF–TrFE/MWCNT-Aligned Composite Nanowires for Energy Harvesting Applications
- Biomimetic Exogenous “Tissue Batteries” as Artificial Power Sources for Implantable Bioelectronic Devices Manufacturing
- Realizing Super‐High Piezoelectricity and Excellent Fatigue Resistance in Domain‐Engineered Bismuth Titanate Ferroelectrics
- Self-poled piezoelectric polymer composites via melt-state energy implantation
- 3D Printed Architected Shell-based Ferroelectric Metamaterials with Programmable Piezoelectric and Pyroelectric properties
- Ultra-low frequency magnetic energy focusing for highly effective wireless powering of deep-tissue implantable electronic devices
- Temperature stability of perovskite-structured lead-free piezoceramics: Evaluation methods, improvement strategies, and future perspectives
- Lead-free dual-frequency ultrasound implants for wireless, biphasic deep brain stimulation
- Flexible, biodegradable ultrasonic wireless electrotherapy device based on highly self-aligned piezoelectric biofilms
- Ultrasound-driven piezoelectret-based nanogenerator stimulates vagus nerve for myocardial infarction treatment
- Yocto Energy Assisted Ternary Ferroelectric Barium Tin Calcium Titanate for Energy Applications
- Flexible, Wearable Wireless-Charging Power System Incorporating Piezo-Ultrasonic Arrays and MXene-Based Solid-State Supercapacitors.
- Enhancing Ultrasound Power Transfer: Efficiency, Acoustics, and Future Directions
- Structure-reinforced periodic porous piezoceramics for ultrahigh electromechanical response manufactured by vat photopolymerization
- Tailoring the Microstructure and Porosity of Porous Piezoelectric Ceramics for Ultrasonic Transducer Application.
- High performance (K,Na)NbO3-based textured ceramics for piezoelectric energy harvesting
- Hybridized and engineered microbe for catalytic generation of peroxynitrite and cancer immunotherapy under sonopiezo initiation
- Energy harvesting properties for potassium-sodium niobate piezoceramics through synergistic effect of phase structure and texturing engineering
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