Area of research
Materials Chemistry · Civil and Structural Engineering
Research interest
Research interests include Materials science, Phonon, Condensed matter physics, Thermoelectric effect, Thermal conductivity, and Thermoelectric materials.
Defects vibrations engineering for enhancing interfacial thermal transport in polymer composites
High ambipolar mobility in cubic boron arsenide
Mobility enhancement in heavily doped semiconductors via electron cloaking
Phonon-engineered extreme thermal conductivity materials
Self-Perpetuating Carbon Foam Microwave Plasma Conversion of Hydrocarbon Wastes into Useful Fuels and Chemicals
Stretchable Anti‐Fogging Tapes for Diverse Transparent Materials
Direct observation of large electron–phonon interaction effect on phonon heat transport
Dynamic intermolecular interactions through hydrogen bonding of water promote heat conduction in hydrogels
Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance
Nanostructured polymer films with metal-like thermal conductivity
Effect of electron-phonon interaction on lattice thermal conductivity of SiGe alloys
Advances in thermoelectrics
Deep defect level engineering: a strategy of optimizing the carrier concentration for high thermoelectric performance
Molecular engineered conjugated polymer with high thermal conductivity
Phonon localization in heat conduction
Large thermoelectric power factor from crystal symmetry-protected non-bonding orbital in half-Heuslers
Simultaneously high electron and hole mobilities in cubic boron-V compounds: BP, BAs, and BSb
Electron mean-free-path filtering in Dirac material for improved thermoelectric performance
Self-compensation induced vacancies for significant phonon scattering in InSb
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
A Microporous and Naturally Nanostructured Thermoelectric Metal-Organic Framework with Ultralow Thermal Conductivity
First-principles mode-by-mode analysis for electron-phonon scattering channels and mean free path spectra in GaAs
Phonon Hydrodynamic Heat Conduction and Knudsen Minimum in Graphite
Thermoelectric Properties of n-type ZrNiPb-Based Half-Heuslers
Nonperturbative Quantum Nature of the Dislocation–Phonon Interaction
Ab initio study of electron mean free paths and thermoelectric properties of lead telluride
First-principles calculations of thermal, electrical, and thermoelectric transport properties of semiconductors
Significant Reduction of Lattice Thermal Conductivity by the Electron-Phonon Interaction in Silicon with High Carrier Concentrations: A First-Principles Study
<i>Ab initio</i>study of electron-phonon interaction in phosphorene