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Shuai Zhang

Publications -  17
Citations -  226

Shuai Zhang is an academic researcher. The author has contributed to research in topics: Ferroelectricity & Dielectric. The author has an hindex of 8, co-authored 17 publications receiving 163 citations.

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Effects on structure and properties of BCZT lead-free piezoelectric ceramics by rare-earth doping

TL;DR: The BCZT-Re ceramics sintered at 1450°C exhibit pure rhombohedral perovskite structure approaching the morphotropic phase boundary (MPB) composition accompanied by different relative density and grain size distribution as mentioned in this paper.
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Enhancing piezoelectric properties of high-Curie temperature PMN-PH-PT piezoelectric ceramics by citrate method

TL;DR: In this paper, the high-Curie temperature (TC) 0.26269 and TC/Tm −297°C were achieved for the PMN-PH-PT piezoelectric ceramics using the citrate method.
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Optimizing structure and electrical properties of high-Curie temperature PMN-PHT piezoelectric ceramics via tailoring sintering process

TL;DR: In this article, the authors investigated the influence of sintering temperature on the electrical and dielectric properties of piezoelectric ceramics and found that the PMN-PHT system exhibits good thermal stability and ferroelectricity properties at elevated temperatures.
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Ferroelectric phase transition and electrical properties of high-TC PMN-PH-PT ceramics prepared by partial oxalate route

TL;DR: The partial oxalate route synthesized PMN-PH-PT ceramics are far superior to the counterparts synthesized by the columbite precursor method and exhibit excellent thermal stability of the piezoelectric properties under high-Curie temperature (∼292°C), ensuring the potential application in transducers under elevated environmental temperatures.
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Photoluminescence performance of Er/Yb co-doped NBT ceramics prepared via hydrothermal method

TL;DR: In this paper, the effects of different content of Er/Yb co-doping on NBT ceramics were studied and the results showed that the NBT-Er-Yb precursor powders present rather pure rhombohedral perovskite structure and homogeneous cube-shape particles with slight distortion composed of nano-sized lamellars.