Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Thermoelectric effect, Condensed matter physics, Thermoelectric materials, Thermal conductivity, and Figure of merit.
Unveiling intrinsic superconductivity in HfNbZrTi medium-entropy alloy single crystals
Crystal structure, magnetotransport properties, and electronic band structure of V<sub>1−<i>x</i></sub>Ti<sub><i>x</i></sub>Se<sub>2</sub> single crystals
The role of spin in thermoelectricity
Majorana zero modes in iron-based superconductors
Topological insulator VxBi1.08-Sn0.02Sb0.9Te2S as a promising n-type thermoelectric material
Significant Enhancement of Thermoelectric Figure of Merit in BiSbTe‐Based Composites by Incorporating Carbon Microfiber
Enhanced thermoelectric performance and mechanical strength of n-type BiTeSe materials produced via a composite strategy
α-Ca<sub>2</sub>CdP<sub>2</sub> and β-Ca<sub>2</sub>CdP<sub>2</sub>: Two Polymorphic Phosphide-Based Infrared Nonlinear Crystals with Distorted NLO-Active Tetrahedral Motifs Realizing Large Second Harmonic Generation Effects and Suitable Band Gaps
Cd<sub>3</sub>(IO<sub>3</sub>)(IO<sub>4</sub>)F<sub>2</sub>·0.1CdO: A Nonlinear-Optical Crystal with the Introduction of Fluoride into Iodate Containing Both [IO<sub>3</sub>]<sup>−</sup> and [IO<sub>4</sub>]<sup>3–</sup> Groups
Significant enhancement of electrical conductivity by incorporating carbon fiber into CoSb3 thermoelectric skutterudite fabricated by spark plasma sintering method
Observation of itinerant ferromagnetism and coupled magnetoresistance in a spinel CuCo<sub>2</sub>S<sub>4</sub>
Ultra‐High Thermoelectric Performance in Bulk BiSbTe/Amorphous Boron Composites with Nano‐Defect Architectures
A<sub>2</sub>Bi<sub>2</sub>(SeO<sub>3</sub>)<sub>3</sub>F<sub>2</sub> (A = K and Rb): Excellent Mid-Infrared Nonlinear Optical Materials with Both Strong SHG Responses and Large Band Gaps
Significant Improvement in Electrical Conductivity and Figure of Merit of Nanoarchitectured Porous SrTiO<sub>3</sub> by La Doping Optimization
Enhancing the Thermoelectric Performance of Polycrystalline SnSe by Decoupling Electrical and Thermal Transport through Carbon Fiber Incorporation
Graphene inclusion induced ultralow thermal conductivity and improved figure of merit in <i>p</i>-type SnSe
Cross-over from weak localization to anti-localization in rare earth doped TRS protected topological insulators
Magneto-transport and electronic structures in MoSi2 bulks and thin films with different orientations
Thermoelectrics: Ultra‐High Thermoelectric Performance in Bulk BiSbTe/Amorphous Boron Composites with Nano‐Defect Architectures (Adv. Energy Mater. 41/2020)
Location dependence of microstructure, phase transformation temperature and mechanical properties on Ni-rich NiTi alloy fabricated by wire arc additive manufacturing
Modulation of Crystal and Electronic Structures in Topological Insulators by Rare-Earth Doping
In-situ hydrostatic pressure induced significant suppression of magnetic relaxation and enhancement of flux pinning in Fe1−Co Se0.5Te0.5 single crystals
Corrigendum to “Location dependence of microstructure, phase transformation temperature and mechanical properties on Ni-rich NiTi alloy fabricated by wire arc additive manufacturing”. [Mater. Sci. Eng. A 749 (2019) 218–222]
Structural Modulation of Anionic Group Architectures by Cations to Optimize SHG Effects: A Facile Route to New NLO Materials in the ATCO<sub>3</sub>F (A = K, Rb; T = Zn, Cd) Series