articleTop 1% cited
Enhanced energy-storage performance with excellent stability under low electric fields in BNT–ST relaxor ferroelectric ceramics
Journal of Materials Chemistry C · 2018 · Vol. 7(2) · pp. 281–288
Weigang Ma(State Key Laboratory of Materials Processing and Die & Mould Technology)Yiwei Zhu(State Key Laboratory of Materials Processing and Die & Mould Technology)Mohsin Ali Marwat(State Key Laboratory of Materials Processing and Die & Mould Technology)Pengyuan Fan(State Key Laboratory of Materials Processing and Die & Mould Technology)Bing Xie✉(Shihezi University)David Salamon(Faculty (United Kingdom))Zuo‐Guang Ye(Simon Fraser University)Haibo Zhang✉(State Key Laboratory of Materials Processing and Die & Mould Technology)
Abstract
Relaxor ferroelectrics are promising candidates for pulsed power dielectric capacitor applications because of their excellent energy-storage properties.
Ferroelectric and Piezoelectric MaterialsDielectric materials and actuatorsAdvanced Sensor and Energy Harvesting MaterialsMaterials scienceEnergy storageDielectricCapacitorFerroelectricityCeramicFerroelectric ceramicsRelaxor ferroelectricPulsed powerOptoelectronics
Funding
- National Natural Science Foundation of China
- China Postdoctoral Science Foundation
- Natural Sciences and Engineering Research Council of Canada
Citations
408
FWCI
17.16
field-weighted impact
References
57
Percentile
100%
vs. same field & year
Citations per year
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References
Overview of current and future energy storage technologies for electric power applications
Renewable and Sustainable Energy Reviews · 2008 · 1,471 citations
Advanced Materials for Energy Storage
Advanced Materials · 2010 · 4,680 citations
Large electrocaloric response and high energy-storage properties over a broad temperature range in lead-free NBT-ST ceramics
Journal of the European Ceramic Society · 2015 · 364 citations
Potassium–sodium niobate based lead-free ceramics: novel electrical energy storage materials
Journal of Materials Chemistry A · 2016 · 580 citations
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