Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Dongliang Shi is active.

Publication


Featured researches published by Dongliang Shi.


Journal of Materials Chemistry C | 2015

Critical roles of Mn-ions in enhancing the insulation, piezoelectricity and multiferroicity of BiFeO3-based lead-free high temperature ceramics

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

Preparation and dielectric properties of composites based on PVDF and PVDF-grafted graphene obtained from electrospinning-hot pressing method

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

Preparation of organosilicate/PVDF composites with enhanced piezoelectricity and pyroelectricity by stretching

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

LPF-doped core–shell structure based CFO/PLZT 0–3 magnetoelectric composite ceramics

Dongliang Shi; Kwok Ho Lam; Kun Li


Journal of Electronic Materials | 2016

Phase Structure, Piezoelectric and Multiferroic Properties of SmCoO3-Modified BiFeO3-BaTiO3 Lead-Free Ceramics

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

Effect of Sr and Ba-doping in optical and electrical properties of KNN based transparent ceramics

Zhiming Geng; Kun Li; Dongliang Shi; Liangliang Zhang; Xiayu Shi


Physica Status Solidi (a) | 2015

Phase transition, piezoelectric, and multiferroic properties of La(Co0.5Mn0.5)O3-modified BiFeO3–BaTiO3 lead-free ceramics

Lingling Luo; Na Jiang; Xiao Zou; Dongliang Shi; Ting Sun; Qiaoji Zheng; Chenggang Xu; Kwok Ho Lam; Dunmin Lin


Advances in Polymer Technology | 2018

Preparation of novel xGNPs/SBS composites with enhanced dielectric constant and thermal conductivity

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

Enhanced thermoelectric properties of SnSe thin films grown by pulsed laser glancing-angle deposition

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

Strong piezoelectricity and multiferroicity in BiFeO3–BaTiO3–NdCoO3 lead-free piezoelectric ceramics with high Curie temperature for current sensing application

Yongquan Guo; Tao Wang; Dongliang Shi; Ping Xiao; Qiaoji Zheng; Chenggang Xu; Kwok Ho Lam; Dunmin Lin

Collaboration


Dive into the Dongliang Shi's collaboration.

Top Co-Authors

Avatar

Kwok Ho Lam

Hong Kong Polytechnic University

View shared research outputs
Top Co-Authors

Avatar

Dunmin Lin

Sichuan Normal University

View shared research outputs
Top Co-Authors

Avatar

Fu-An He

Hong Kong Polytechnic University

View shared research outputs
Top Co-Authors

Avatar

Qiaoji Zheng

Sichuan Normal University

View shared research outputs
Top Co-Authors

Avatar

Chenggang Xu

Sichuan Normal University

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Lingling Luo

Sichuan Normal University

View shared research outputs
Top Co-Authors

Avatar

Baoling Huang

Hong Kong University of Science and Technology

View shared research outputs
Top Co-Authors

Avatar

Na Jiang

Sichuan Normal University

View shared research outputs
Researchain Logo
Decentralizing Knowledge