Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Advanced Thermoelectric Materials and Devices, Thermal properties of materials, Chalcogenide Semiconductor Thin Films, and Thermal Radiation and Cooling Technologies.
A highly integrated blade structure for thermoelectric devices with ultra-high output voltage and power densities
Screening thermoelectric materials for high-output performance in wearable electronics
Warm metalworking for plastic manufacturing in brittle semiconductors.
Plasticity of Bi<sub>2</sub>Te<sub>3</sub>-family thermoelectric crystals.
Cellulose nanofibril-loaded filter paper for highly efficient removal of microplastics via multiscale capture mechanisms
Surface aluminization for enhancing oxidation resistance of the Nb
<sub>0.86</sub>
Hf
<sub>0.14</sub>
FeSb thermoelectric element
Bamboo Fiber Paper-Based Filter Material for Fast and Efficient Capture of Microplastics
Acid vapor doping of polar polythiophenes for high electrical conductivity.
Crystal structure, chemical bonding, and mechanical properties of EuMg2Bi2
Piezoelectric‐Augmented Thermoelectric Ionogels for Self‐Powered Multimodal Medical Sensors
Extraordinary self-powered Y-shaped flexible film thermoelectric device for wearables
Room-temperature exceptional plasticity in defective Bi<sub>2</sub>Te<sub>3</sub>-based bulk thermoelectric crystals.
Ultra-low lattice thermal conductivity realizing ultra-high performance Bi<sub>0.48</sub>Sb<sub>1.52</sub>Te<sub>3</sub>-based thermoelectric material and module
Approaching crystal's limit of thermoelectrics by nano-sintering-aid at grain boundaries.
Plastic Mg<sub>3</sub>(Sb,Bi)<sub>2</sub>-based thermoelectric compounds with enhanced texture <i>via</i> cold-deformation
Inorganic thermoelectric semiconductors with room temperature plasticity
Modeling critical thermoelectric transports driven by band broadening and phonon softening.
Anisotropic thermoelectric properties of GeTe single crystals
Comparative study of atomic models of plastic deformation mechanism in ductile inorganic semiconductors: A theoretical discussion
The ultralow thermal conductivity of Cs2SnI6 by filling interstitial voids with Mg2+ ions
Extraordinarily harvesting waste heat by thermally regenerative Zn-ion battery
Publisher's Note: “Nanoscale subsurface imaging by non-steady-state electron beam-driven scanning thermoelectric capacitance microscopy” [Appl. Phys. Lett.
<b>125</b>
, 103503 (2024)]
Nanoscale subsurface imaging by non-steady-state electron beam-driven scanning thermoelectric capacitance microscopy
Ag<sub>2</sub> Q-Based (Q = S, Se, Te) Silver Chalcogenide Thermoelectric Materials.
Lead-free and scalable GeTe-based thermoelectric module with an efficiency of 12.
Modulation of the morphotropic phase boundary for high-performance ductile thermoelectric materials.
Strategic Doping in Metal Halide Perovskites for Thermoelectrics
A giant Nernst power factor and figure-of-merit in polycrystalline NbSb<sub>2</sub> for Ettingshausen refrigeration
Enhanced Thermoelectric Performance of <i>P</i>‐Type (Bi,Sb)<sub>2</sub>Te<sub>3</sub> by Incorporating Non‐Stoichiometric Ag<sub>5</sub>Te<sub>3</sub> and Refining Te‐Se Ratio
Direct observation of hot-electron-enhanced thermoelectric effects in silicon nanodevices.