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'.
Enhancement of grain connectivity and critical current density in the ex-situ sintered MgB2 superconductors by doping minor Cu
The isotope effect of boron on the carbon doping and critical current density of Mg<sup>11</sup>B<sub>2</sub>superconductors
Doping-Induced Isotopic Mg11B2 Bulk Superconductor for Fusion Application
High performance MgB<sub>2</sub> superconducting wires fabricated by improved internal Mg diffusion process at a low temperature
The kinetics mechanism of MgB2 layer formation within MgB2 superconducting wire fabricated using improved internal Mg diffusion process
Superior critical current density obtained in MgB 2 bulks via employing carbon-coated boron and minor Cu addition
Improved Superconducting properties in the Mg11B2 low activation superconductor prepared by low-temperature sintering
Sintering process and critical current density of low activation Mg 11 B 2 superconductors from low temperature to high temperature
Significantly enhanced critical current density in nano-MgB<sub>2</sub>grains rapidly formed at low temperature with homogeneous carbon doping
Superior critical current density obtained in Mg11B2 low activation superconductor by using reactive amorphous 11B and optimizing sintering temperature