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Dive into the research topics where Yahui Tian is active.

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Featured researches published by Yahui Tian.


ACS Applied Materials & Interfaces | 2017

Multiple Interfacial Fe3O4@BaTiO3/P(VDF-HFP) Core-Shell-Matrix Films with Internal Barrier Layer Capacitor (IBLC) Effects and High Energy Storage Density

Ling Zhou; Qiuyun Fu; Fei Xue; Xiahui Tang; Dongxiang Zhou; Yahui Tian; Geng Wang; Chaohong Wang; Haibo Gou; Lei Xu

Flexible nanocomposites composed of high dielectric constant fillers and polymer matrix have shown great potential for electrostatic capacitors and energy storage applications. To obtain the composited material with high dielectric constant and high breakdown strength, multi-interfacial composited particles, which composed of conductive cores and insulating shells and possessed the internal barrier layer capacitor (IBLC) effect, were adopted as fillers. Thus, Fe3O4@BaTiO3 core-shell particles were prepared and loaded into the poly(vinylidene fluoride-co-hexafluoropropylene) (P(VDF-HFP)) polymer matrix. As the mass fraction of core-shell fillers increased from 2.5 wt % to 30 wt %, the dielectric constant of the films increased, while the loss tangent remained at a low level (<0.05 at 1 kHz). Both high electric displacement and high electric breakdown strength were achieved in the films with 10 wt % core-shell fillers loaded. The maximum energy storage density of 7.018 J/cm3 was measured at 2350 kV/cm, which shows significant enhancement than those of the pure P(VDF-HFP) films and analogous composited films with converse insulating-conductive core-shell fillers. A Maxwell-Wagner capacitor model was also adopted to interpret the efficiency of IBLC effects on the suppressed loss tangent and the superior breakdown strength. This work explored an effective approach to prepare dielectric nanocomposites for energy storage applications experimentally and theoretically.


Ceramics International | 2015

Magneto-electric coupling study in multiferroic La0.7Ba0.3MnO3–BaTiO3 composite ceramic at room temperature

Ling Zhou; Qiuyun Fu; Dongxiang Zhou; Fei Xue; Yahui Tian; Liangbin Hao


Journal of Magnetism and Magnetic Materials | 2015

Solvothermal synthesis of CoFe2O4 submicron compact spheres and tunable coercivity induced via low-temperature thermal treatment

Ling Zhou; Qiuyun Fu; Dongxiang Zhou; Fei Xue; Yahui Tian


Ceramics International | 2015

Properties of Bi0.8Ln0.2FeO3 (Ln=La, Gd, Ho) multiferroic ceramics

Fei Xue; Qiuyun Fu; Dongxiang Zhou; Yahui Tian; Yunxiang Hu; Zhiping Zheng; Ling Zhou


Ceramics International | 2015

Magnetocapacitance and structure properties of Bi0.85−xLa0.15PbxFeO3 ceramics

Qiuyun Fu; Fei Xue; Zhiping Zheng; Dongxiang Zhou; Ling Zhou; Yahui Tian; Yunxiang Hu


Journal of Magnetism and Magnetic Materials | 2018

Exchange bias in spin-glass-like NiFe2O4/BiFeO3 heterojunction at room temperature

Chaohong Wang; Ling Zhou; Qiuyun Fu; Yahui Tian; Sheng Wang; Haibo Gou; Jianbo Ai; Lu Zhang; Fei Xue


Journal of Magnetism and Magnetic Materials | 2017

Impedance spectroscopy and ferromagnetic properties of Bi0.8Gd0.2FeO3 multiferroics

Yahui Tian; Fei Xue; Qiuyun Fu; Dongxiang Zhou; Yunxiang Hu; Ling Zhou; Zhiping Zheng; Zengnian Xin


Applied Physics Letters | 2017

Self-assembled core-shell CoFe2O4@BaTiO3 particles loaded P(VDF-HFP) flexible films with excellent magneto-electric effects

Ling Zhou; Qiuyun Fu; Dongxiang Zhou; Zhiping Zheng; Yunxiang Hu; Wei Luo; Yahui Tian; Chaohong Wang; Fei Xue; Xiahui Tang


Journal of Physical Chemistry C | 2018

Determination of Defect Levels in Melt-Grown All-Inorganic Perovskite CsPbBr3 Crystals by Thermally Stimulated Current Spectra

Mingzhi Zhang; Zhiping Zheng; Qiuyun Fu; Pengju Guo; Sen Zhang; Cheng Chen; Hualin Chen; Mei Wang; Wei Luo; Yahui Tian


Journal of Materials Science: Materials in Electronics | 2018

Enhancement of dielectric and magnetic properties in phase pure, dense BiFeO3 nanoceramics synthesized by spark plasma sintering techniques

Yahui Tian; Qiuyun Fu; Fei Xue; Ling Zhou; Chaohong Wang; Haibo Gou; Yunxiang Hu; Zhiping Zheng; Wei Luo; Mingzhi Zhang

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Qiuyun Fu

Huazhong University of Science and Technology

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Fei Xue

Huazhong University of Science and Technology

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Ling Zhou

Huazhong University of Science and Technology

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Dongxiang Zhou

Huazhong University of Science and Technology

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Zhiping Zheng

Huazhong University of Science and Technology

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Chaohong Wang

Huazhong University of Science and Technology

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Yunxiang Hu

Huazhong University of Science and Technology

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Haibo Gou

Huazhong University of Science and Technology

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Mingzhi Zhang

Huazhong University of Science and Technology

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Wei Luo

Huazhong University of Science and Technology

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