Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Thermoelectric effect and Lanthanide, with related work in Seebeck coefficient, Thermoelectric materials, Condensed matter physics. Notable publications include 'Tuning the carrier scattering mechanism to effectively improve the thermoelectric properties', 'Discovery of ZrCoBi based half Heuslers with high thermoelectric conversion efficiency', and 'Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance'.
Locating anionic hydrogen in Ba3(Yb,Lu)2O5H2: A combined approach of X-ray diffraction, crystal chemistry, and DFT calculations
Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance
Discovery of ZrCoBi based half Heuslers with high thermoelectric conversion efficiency
Synthesis and Crystal Structure of the Layered Lanthanide Oxychlorides Ba<sub>3</sub>Ln<sub>2</sub>O<sub>5</sub>Cl<sub>2</sub>
Tuning the carrier scattering mechanism to effectively improve the thermoelectric properties
Manipulation of ionized impurity scattering for achieving high thermoelectric performance in n-type Mg <sub>3</sub> Sb <sub>2</sub> -based materials
Coexistence of Weyl physics and planar defects in the semimetals TaP and TaAs
Electronic, transport, and optical properties of bulk and mono-layer PdSe2
Transport properties of cubic crystalline Ge2Sb2Te5: A potential low-temperature thermoelectric material
Ba2TeO as an optoelectronic material: First-principles study
ChemInform Abstract: A Family of Rare Earth Molybdenum Bronzes: Oxides Consisting of Periodic Arrays of Interacting Magnetic Units.
Single crystal synthesis and magnetism of the BaLn2O4 family (Ln = lanthanide)
Ba2TeO: A new layered oxytelluride
Superconductivity with extremely large upper critical fields in Nb2Pd0.81S5