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Dive into the research topics where Wei-Guo Liu is active.

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Featured researches published by Wei-Guo Liu.


Journal of Materials Chemistry C | 2017

Structure-property relationships of low sintering temperature scheelite-structured (1 -x)BiVO4-xLaNbO4 microwave dielectric ceramics

Li-Xia Pang; Di Zhou; Zeming Qi; Wei-Guo Liu; Zhenxing Yue; Ian M. Reaney

A series of (1 − x)BiVO4–xLaNbO4 (0.0 ≤ x ≤ 1.0) ceramics were prepared via a solid state reaction method. A scheelite-structured solid solution was formed for x ≤ 0.5 but for x > 0.5, tetragonal scheelite, monoclinic LaNbO4-type and La1/3NbO3 phases co-existed. As x increased from 0 to 0.1, the room temperature crystal structure gradually changed from monoclinic to tetragonal scheelite, associated with a decrease in the ferroelastic phase transition temperature from 255 °C (BiVO4) to room temperature or even below. High sintering temperatures were also found to accelerate this phase transition for compositions with x ≤ 0.08. Temperature independent high quality factor Qf >10000 GHz in a wide temperature range 25–140 °C and high microwave permittivity er ∼76.3 ± 0.5 was obtained for the x = 0.06 ceramic sintered at 800 °C. However, small changes in composition resulted in a change in the sign and magnitude of the temperature coefficient of resonant frequency (TCF) due to the proximity of the ferroelastic transition to room temperature. If TCF can be controlled and tuned through zero, then (1 − x)BiVO4–xLaNbO4 (0.0 ≤ x ≤ 1.0) is a strong candidate for microwave device applications.


Journal of Alloys and Compounds | 2012

Low-temperature sintering and microwave dielectric properties of Li3MO4 (M = Ta, Sb) ceramics

Li-Xia Pang; Huan Liu; Di Zhou; Jia-Xing Yang; Dangjuan Li; Wei-Guo Liu


Materials Letters | 2012

Microwave dielectric ceramic with intrinsic low firing temperature: BaLa2(MoO4)4

Li-Xia Pang; Huan Liu; Di Zhou; Guobin Sun; Wen-Gang Qin; Wei-Guo Liu


Journal of the American Ceramic Society | 2014

Low-Temperature Sintering and Microwave Dielectric Properties of CaMoO4-Based Temperature Stable LTCC Material

Li-Xia Pang; Di Zhou; Wei-Guo Liu


Ceramics International | 2016

Novel glass-free low-temperature fired microwave dielectric ceramics: Bi(Ga1/3Mo2/3)O4

Li-Xia Pang; Wei-Guo Liu; Di Zhou; Zhenxing Yue


Materials Letters | 2013

Infrared spectroscopy and microwave dielectric properties of ultra-low temperature firing (K0.5La0.5)MoO4 ceramics

Li-Xia Pang; Di Zhou; Chang-Long Cai; Wei-Guo Liu


Journal of the American Ceramic Society | 2018

Temperature stable K0.5(Nd1−xBix)0.5MoO4 microwave dielectrics ceramics with ultra‐low sintering temperature

Li-Xia Pang; Di Zhou; Dawei Wang; Jin‐Xiong Zhao; Wei-Guo Liu; Zhenxing Yue; Ian M. Reaney


Ceramics International | 2015

Temperature stable high K microwave dielectric ceramics of Bi3NbO7 doped by V2O5

Li-Xia Pang; Wei-Guo Liu; Di Zhou


Archive | 2011

Lithium-based low-loss temperature-stabilized microwave medium ceramic material and preparation method thereof

Li-Xia Pang; Di Zhou; Jing Guo; Guobin Sun; Dangjuan Li; Wei-Guo Liu


Journal of The European Ceramic Society | 2017

Original ArticleCrystal structure and microwave dielectric behaviors of scheelite structured (1-x)BiVO4-xLa2/3MoO4 (0.0 ≤ x ≤ 1.0) ceramics with ultra-low sintering temperature

Li-Xia Pang; Di Zhou; Wei-Guo Liu; Zeming Qi; Zhenxing Yue

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Li-Xia Pang

University of Sheffield

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Di Zhou

Ministry of Education

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Zeming Qi

University of Science and Technology of China

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Dawei Wang

University of Sheffield

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Jin‐Xiong Zhao

Electric Power Research Institute

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