Area of research
Materials Chemistry · Civil and Structural Engineering
Research interest
Research interests include Advanced Thermoelectric Materials and Devices, Thermal properties of materials, Thermal Radiation and Cooling Technologies, and Perovskite Materials and Applications.
Eco-sustainable magnetoresistive sensors towards disposable magnetoelectronics.
Atomic-scale interface strengthening unlocks efficient and durable Mg-based thermoelectric devices.
Phase-stabilized GeTe with optimized interfaces for high-performance thermoelectric energy conversion
Enhancing thermoelectric performance of p-type Mg(Mg,Zn)2Sb2 through Mg-site-specific substitution
Microstructural transformation for robust and high-efficiency Zintl thermoelectrics.
Interface kinetic manipulation enabling efficient and reliable Mg3Sb2 thermoelectrics
Fully inkjet-printed Ag<sub>2</sub>Se flexible thermoelectric devices for sustainable power generation.
Intranasal delivery of engineered extracellular vesicles loaded with miR-206-3p antagomir ameliorates Alzheimer's disease phenotypes
Metal-Halogen Interactions Inducing Phase Separation for Self-Healing and Tough Ionogels with Tunable Thermoelectric Performance.
Interface kinetic manipulation enabling efficient and reliable Mg<sub>3</sub>Sb<sub>2</sub> thermoelectrics.
Enhanced Thermoelectric Properties of Pd and Ni Codoped Electronegative Element-Filled Skutterudites
High-efficiency and reliable same-parent thermoelectric modules using Mg<sub>3</sub>Sb<sub>2</sub>-based compounds.
Exceptional n-type thermoelectric ionogels enabled by metal coordination and ion-selective association.
High-efficiency segmented thermoelectric power generation modules constructed from all skutterudites
Mg<sub>3</sub>(Bi,Sb)<sub>2</sub>-based thermoelectric modules for efficient and reliable waste-heat utilization up to 750 K
Extracellular vesicles derived from astrocyte-treated with haFGF<sub>14-154</sub> attenuate Alzheimer phenotype in AD mice
Tailoring Intermolecular Interactions Towards High-Performance Thermoelectric Ionogels at Low Humidity.
A Bi<sub>2</sub>Te<sub>3</sub>-Filled Nickel Foam Film with Exceptional Flexibility and Thermoelectric Performance.
High-entropy-stabilized chalcogenides with high thermoelectric performance
High-entropy-stabilized chalcogenides with high thermoelectric performance.
Towards tellurium-free thermoelectric modules for power generation from low-grade heat.
Enhanced thermoelectric properties of binary CoSb3 by embedding FeCl3-intercalated graphene nanosheets
High-Performance n-Type Ge-Free Silicon Thermoelectric Material from Silicon Waste.
Electrode interface optimization advances conversion efficiency and stability of thermoelectric devices.
Superior performance and high service stability for GeTe-based thermoelectric compounds.