← back to search

Yongchang Liu

Tianjin University · CN
Area of research
Condensed Matter Physics · Biomaterials
Research interest
Research focused on Sintering and Superconductivity, with related work in Boron, Diffusion, Critical current. Notable publications include 'High performance MgB 2 superconducting wires fabricated by improved internal Mg diffusion process at a low temperature', 'Significantly enhanced critical current density in nano-MgB 2 grains rapidly formed at low temperature with homogeneous carbon doping', and 'The kinetics mechanism of MgB2 layer formation within MgB2 superconducting wire fabricated using improved internal Mg diffusion process'.
h-index
citations
140
works
10
NIH funding
primary concept
email

Recent publications

Enhancement of grain connectivity and critical current density in the ex-situ sintered MgB2 superconductors by doping minor Cu
Journal of Alloys and Compounds 2017cited by 20position: lastdoi
The isotope effect of boron on the carbon doping and critical current density of Mg<sup>11</sup>B<sub>2</sub>superconductors
Journal of Materials Chemistry C 2017cited by 9position: middledoi
Doping-Induced Isotopic Mg11B2 Bulk Superconductor for Fusion Application
Energies 2017cited by 9position: middledoi
High performance MgB<sub>2</sub> superconducting wires fabricated by improved internal Mg diffusion process at a low temperature
Journal of Materials Chemistry C 2016cited by 24position: firstdoi
The kinetics mechanism of MgB2 layer formation within MgB2 superconducting wire fabricated using improved internal Mg diffusion process
Journal of Alloys and Compounds 2016cited by 21position: firstdoi
Superior critical current density obtained in MgB 2 bulks via employing carbon-coated boron and minor Cu addition
Physica C Superconductivity 2016cited by 10position: middledoi
Improved Superconducting properties in the Mg11B2 low activation superconductor prepared by low-temperature sintering
Scientific Reports 2016cited by 7position: middledoi
Sintering process and critical current density of low activation Mg 11 B 2 superconductors from low temperature to high temperature
Physica C Superconductivity 2016cited by 3position: middledoi
Significantly enhanced critical current density in nano-MgB<sub>2</sub>grains rapidly formed at low temperature with homogeneous carbon doping
Superconductor Science and Technology 2015cited by 23position: firstdoi
Superior critical current density obtained in Mg11B2 low activation superconductor by using reactive amorphous 11B and optimizing sintering temperature
Journal of Alloys and Compounds 2015cited by 14position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Zongqing Ma · Shandong University of Technology10 papers (2015–2017)Md. Shahriar A. Hossain · Queensland University of Technology8 papers (2015–2017)Fang Cheng · Tianjin University6 papers (2016–2017) · 4 papers (2016–2017)Huijun Li · University of Macau4 papers (2015–2017)Wenbin Qiu · University of Wollongong3 papers (2016–2017)Dipak Patel · University of Wollongong2 papers (2015–2017) · 2 papers (2017–2017)Shi Xue Dou · University of Technology Sydney2 papers (2015–2016) · 2 papers (2017–2017)Yusuke Yamauchi · The University of Queensland2 papers (2017–2017)Qi Cai · Guangdong University of Technology2 papers (2016–2017)Yoshio Bando · University of Wollongong2 papers (2017–2017)Jung Ho Kim · CJ CheilJedang (South Korea)2 papers (2015–2017)Md. Safin Shahriar · University of Wollongong1 papers (2015–2015)Hyunseock Jie · University of Wollongong1 papers (2017–2017) · 1 papers (2015–2015)Subrata Pradhan · University of Wollongong1 papers (2017–2017)Daniel Gajda · University of Wollongong1 papers (2017–2017) · 1 papers (2016–2016)