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Dive into the research topics where Xiaogang Zhao is active.

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Featured researches published by Xiaogang Zhao.


Physical Chemistry Chemical Physics | 2015

Origin of colossal permittivity in (In1/2Nb1/2)TiO2via broadband dielectric spectroscopy.

Xiaogang Zhao; Peng Liu; Yuechan Song; Zhang Ap; Xiao-ming Chen; Jian-Ping Zhou

(In1/2Nb1/2)TiO2 (IN-T) ceramics were prepared via a solid-state reaction route. X-ray diffraction (XRD) and Raman spectroscopy were used for the structural and compositional characterization of the synthesized compounds. The results indicated that the sintered ceramics have a single phase of rutile TiO2. Dielectric spectroscopy (frequency range from 20 Hz to 1 MHz and temperature range from 10 K to 270 K) was performed on these ceramics. The IN-T ceramics showed extremely high permittivities of up to ∼10(3), which can be referred to as colossal permittivity, with relatively low dielectric losses of ∼0.05. Most importantly, detailed impedance data analyses of IN-T demonstrated that electron-pinned defect-dipoles, interfacial polarization and polaron hopping polarization contribute to the colossal permittivity at high temperatures (270 K); however, only the complexes (pinned electron) and polaron hopping polarization are active at low temperatures (below 180 K), which is consistent with UDR analysis.


Electronic Materials Letters | 2014

Preparation of homogeneous microstructure pure lead metaniobate by two-step sintering

Xiaogang Zhao; Peng Liu; Bo Chao; Su Juan Liu; Ming Pang; Xiao-ming Chen; Jian-Ping Zhou

The purpose of the present work is to obtain the Lead metaniobate ceramics with the orthorhombic phase via a two-step sintering method. The samples were first sintered at 1320°C for 10 min, and then sintered separately at 1260°C, 1220°C, and 1180°C for 4 h. All the ceramics show orthorhombic phase and homogeneous microstructure. It was found that the abnormal grain growth was restrained obviously.


Journal of The European Ceramic Society | 2016

Novel series of ultra-low loss microwave dielectric ceramics: Li2Mg3BO6 (B = Ti, Sn, Zr)

Zhifen Fu; Peng Liu; Jianli Ma; Xiaogang Zhao; Huaiwu Zhang


Journal of Alloys and Compounds | 2012

Fabrication of nanopowders by high energy ball milling and low temperature sintering of Mg2SiO4 microwave dielectrics

Lin Cheng; Peng Liu; Xiao-ming Chen; WenCheng Niu; Guo-Guang Yao; Cheng Liu; Xiaogang Zhao; Qian Liu; Huaiwu Zhang


Physical Chemistry Chemical Physics | 2015

Correction: Origin of colossal permittivity in (In1/2Nb1/2)TiO2via broadband dielectric spectroscopy

Xiaogang Zhao; Peng Liu; Yuechan Song; An-ping Zhang; Xiao-ming Chen; Jian-Ping Zhou


Journal of The European Ceramic Society | 2014

Low-temperature sintering and microwave dielectric properties of Ca5Co4(VO4)6 ceramics

Guo-Guang Yao; Peng Liu; Xiaogang Zhao; Jian-Ping Zhou; Huaiwu Zhang


Journal of the American Ceramic Society | 2011

Microstructure, Dielectric, and Piezoelectric Properties of Pb0.92Ba0.08Nb2O6–0.25 wt% TiO2 Ceramics: Effect of Sintering Temperature

XiaoMing Chen; HaiYan Ma; Wei Ding; Yu Zhang; Xiaogang Zhao; Xiao Liang; Peng Liu


Journal of the American Ceramic Society | 2017

Dielectric and electric relaxations induced by the complex defect clusters in (Yb+Nb) co-doped rutile TiO2 ceramics

Xiaogang Zhao; Peng Liu


Journal of Alloys and Compounds | 2017

Dielectric properties of (Bi0.5Nb0.5)xTi1-xO2 ceramics with colossal permittivity

Yuechan Song; Peng Liu; Xiaogang Zhao; Baochun Guo; Xiulei Cui


Journal of Alloys and Compounds | 2017

Effects of sintering atmosphere on microstructure and dielectric properties of (Yb + Nb) co-doped rutile TiO2 ceramics

Xiaogang Zhao; Peng Liu

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Peng Liu

Shaanxi Normal University

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Huaiwu Zhang

University of Electronic Science and Technology of China

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Jian-Ping Zhou

Shaanxi Normal University

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Xiao-ming Chen

Shaanxi Normal University

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Yuechan Song

Shaanxi Normal University

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Baochun Guo

Shaanxi Normal University

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Bo Chao

Shaanxi Normal University

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Guo-Guang Yao

Shaanxi Normal University

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Jianli Ma

Anhui University of Science and Technology

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Ming Pang

Shaanxi Normal University

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