Dongliang Shi
Hong Kong Polytechnic University
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Publication
Featured researches published by Dongliang Shi.
Journal of Materials Chemistry C | 2015
Yongquan Guo; Ping Xiao; Rui Wen; Yang Wan; Qiaoji Zheng; Dongliang Shi; Kwok Ho Lam; Milan Liu; Dunmin Lin
A lead-free multiferroic ceramic of BiFe0.96Sc0.04O3–BaTiO3 is a type of ABO3 perovskite structure, belonging to the R3c space group, but exhibiting poor insulation and weak multiferroicity. In this work, the critical roles of Mn-ions in tailoring the electrical and magnetic properties of BiFeO3-based materials are revealed: the introduction of MnO2 into BiFe0.96Sc0.04O3–BaTiO3 induces a dramatic improvement in insulation, piezoelectricity and multiferroicity. New compositions of BiFe0.96Sc0.04O3–BaTiO3 + x mol% MnO2 were synthesized by a conventional solid-state reaction method. All the ceramics possess a perovskite structure, and a morphotropic phase boundary (MPB) of rhombohedral and monoclinic phases is formed at x = 0.5–1.0. The formation of and is noticeably suppressed and the resistivity of the ceramics is increased by ∼100 times after the addition of 0.5–1.0 mol% MnO2, which make the ceramic polarizable and thus give strong ferroelectricity and considerable piezoelectricity. The ceramics with the MPB composition exhibit high electrical insulation (R = 1.2–1.7 × 1010 Ω cm), good piezoelectricity (d33 = 123–143 pC N−1, kp = 0.34–0.35), strong ferroelectricity (Pr = 13.1–17.6 μC cm−2), high Curie temperature (590–596 °C) and excellent temperature stability of piezoelectric and ferroelectric properties. These improvements are greatly associated with the contribution of Mn ions in the ceramics. Surprisingly, sharply enhanced ferromagnetism with Mr = 0.4946 emu g−1 and Ms = 1.0298 emu g−1 is obtained in the ceramic with x = 7.0, almost one thousand times larger than that of an un-doped ceramic. The origin of unusual ferromagnetism is associated with significant changes in magnetic ordering caused by Mn doping. The high magnetoelectric effect (α33 = 429.6 mV cm−1 Oe−1) is obtained after the addition of 2.0 mol% Mn ions. Our study suggests that the present ceramics may have potential applications in advanced memory devices as promising lead-free high temperature piezoelectric and multiferroic materials.
Journal of Macromolecular Science, Part A | 2018
Ying Yang; Jun-Jun Chen; Ying Li; Dongliang Shi; Bo Lin; Shijie Zhang; Yiwen Tang; Fu-An He; Kwok Ho Lam
ABSTRACT In this work, graphene was modified by the grafting of poly(vinylidene fluoride) (PVDF) using Friedel-Crafts reaction to form PVDF-grafted graphene (PGG) filler, which was confirmed by transmission electron microscope, Fourier transform infrared, Raman spectroscopy, wide angle X-ray diffraction, and thermogravimetric analysis. The solution containing as-prepared PVDF-grafted graphene and PVDF was electrospun to form fibrous membranes, which was subjected to hot pressing in the laminating mode to prepare solid PGG/PVDF composite films. The structures of electrospun fibrous membrane and solid PGG/PVDF composite film were investigated by scanning electron microscope. Furthermore, it could be found that the dielectric constants of PGG/PVDF composites exhibiting relatively low dielectric loss factors were significantly higher than that of pure PVDF.
Composites Science and Technology | 2016
Fu-An He; Kai Lin; Dongliang Shi; Hui-Jun Wu; Hua-Kun Huang; Jun-Jun Chen; Fang Chen; Kwok Ho Lam
Journal of Alloys and Compounds | 2014
Dongliang Shi; Kwok Ho Lam; Kun Li
Journal of Electronic Materials | 2016
Na Jiang; Mijie Tian; Lingling Luo; Qiaoji Zheng; Dongliang Shi; Kwok Ho Lam; Chenggang Xu; Dunmin Lin
Journal of Materials Science: Materials in Electronics | 2015
Zhiming Geng; Kun Li; Dongliang Shi; Liangliang Zhang; Xiayu Shi
Physica Status Solidi (a) | 2015
Lingling Luo; Na Jiang; Xiao Zou; Dongliang Shi; Ting Sun; Qiaoji Zheng; Chenggang Xu; Kwok Ho Lam; Dunmin Lin
Advances in Polymer Technology | 2018
Jun-Jun Chen; Shi-Hao Qin; Qun-Chen Lv; Dongliang Shi; Xu-Min Zheng; Hui-Jun Wu; Hua-Kun Huang; Liu-Guang Lian; Fu-An He; Kwok Ho Lam
Journal of Materiomics | 2017
Chun Hung Suen; Dongliang Shi; Yu Su; Zhi Zhang; Cheuk Ho Chan; Xiaodan Tang; Yang Li; Kwok Ho Lam; Xinxin Chen; Baoling Huang; X.Y. Zhou; Jiyan Dai
Journal of Materials Science: Materials in Electronics | 2017
Yongquan Guo; Tao Wang; Dongliang Shi; Ping Xiao; Qiaoji Zheng; Chenggang Xu; Kwok Ho Lam; Dunmin Lin