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Publication


Featured researches published by Jixing Liu.


IEEE Transactions on Applied Superconductivity | 2017

Optimization of High-Energy Ball Milling Aided Sintering Process for FeSe Superconductors

Shengnan Zhang; Jianqing Feng; Jixing Liu; Botao Shao; Chengshan Li; Pingxiang Zhang

Superconducting FeSe bulks with high superconducting content of PbO-type tetragonal β-FeSe phase were prepared with high-energy ball milling (HEBM) aided sintering process. During the HEBM process, different ball-to-powder ratios of 6:1, 8:1, and 10:1 were adopted. The influences of ball-to-powder ratio on the phase composition of both ball milled powders and sintered bulks, morphology, and superconducting properties of final bulks were systematically investigated. It was noticed that, with the increase of ball-to-powder ratio, the energy input into the ball milling system increased, and the high-energy collision times increased. Therefore, more Fe atoms entered into the Fe-Se matrix, and the ball milling products changed from Fe3Se4 to Fe7Se8. On the other hand, the decreasing total collision times led to the increase of final particle size. After the same sintering process, FeSe bulks with the major phase of β-FeSe were all obtained. However, with the increasing ball-to-powder ratio, the contents of both hexagonal δ-FeSe phase and residual Fe contents increased. Due to the different Fe/Se ratio in the final β-FeSe phase, the superconducting transition behavior varied obviously. Higher critical temperature of 8.0 K and larger superconducting phase content were achieved with the optimal ball to powder ratio of 6:1.


Materials Chemistry and Physics | 2015

Fabrication mechanism of FeSe superconductors with high-energy ball milling aided sintering process

Shengnan Zhang; Jixing Liu; Jianqing Feng; Yao Wang; Xiaobo Ma; Chengshan Li; Pingxiang Zhang


Journal of Materiomics | 2015

Optimization of FeSe superconductors with the high-energy ball milling aided sintering process

Shengnan Zhang; Jixing Liu; Jianqing Feng; Chengshan Li; Xiaobo Ma; Pingxiang Zhang


Materials Letters | 2016

Fabrication of FeSe superconducting tapes with high-energy ball milling aided PIT process

Jianqing Feng; Shengnan Zhang; Jixing Liu; Chengshan Li; Xiaobo Ma; Pingxiang Zhang


Physica C-superconductivity and Its Applications | 2016

The phase evolution mechanism in Fe(Se, Te) system

Jixing Liu; Chengshan Li; Shengnan Zhang; Jianqing Feng; Pingxiang Zhang; Lian Zhou


Journal of Alloys and Compounds | 2017

Influences of Fe content on the fabrication of FeSe superconductors with high-energy ball milling aided sintering process

Shengnan Zhang; Botao Shao; Gaoyang Zhao; Jixing Liu; Jianqing Feng; Chengshan Li; Pingxiang Zhang


Journal of Superconductivity and Novel Magnetism | 2015

Room-Temperature Chemical Synthesis of PbO-Type FeSe Superconducting Nanoparticles

Chengshan Li; Shengnan Zhang; Zeming Yu; Xiaobo Ma; Jixing Liu; Pingxiang Zhang


IEEE Transactions on Applied Superconductivity | 2019

Optimization of High-Energy Ball-Milling Time for Fe1.1Se0.5Te0.5 Polycrystalline Superconductors

Jixing Liu; Chengshan Li; Shengnan Zhang; Meng Li; Jianqing Feng; Pingxiang Zhang; Lian Zhou


Rare Metals | 2018

Optimization of sintering parameters for fabrication of Ag-sheathed FeSe superconducting wires

Jianqing Feng; Shengnan Zhang; Jixing Liu; Botao Shao; Cheng-Shan Li; Ming Liang; Pingxiang Zhang


Journal of Superconductivity and Novel Magnetism | 2018

Optimization of FeSe Superconducting Tapes with Different Sheath Materials and Precursor Powders

Shengnan Zhang; Jixing Liu; Jianqing Feng; Botao Shao; Chengshan Li; Pingxiang Zhang

Collaboration


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Chengshan Li

Northeastern University

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Shengnan Zhang

Northwestern Polytechnical University

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Jianqing Feng

Northwestern Polytechnical University

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Pingxiang Zhang

Northwestern Polytechnical University

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Xiaobo Ma

Northwestern Polytechnical University

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Lian Zhou

Northeastern University

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Jian Feng Huang

Shaanxi University of Science and Technology

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Liyun Cao

Shaanxi University of Science and Technology

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H. Wang

Shaanxi University of Science and Technology

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J. F. Lv

Chongqing Normal University

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