Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Thermoelectric effect, Thermal conductivity, Thermoelectric materials, Spark plasma sintering, and Phonon.
A core-shell structure to realize high thermoelectric performance in Fe and Sb co-doped GeTe materials
Engineering n–p Heterointerfaces in Bi<sub>2</sub>Se<sub>3</sub>/Bi<sub>2</sub>O<sub>3</sub> Nanocomposite Catalysts for Lithium–Oxygen Batteries
Enhanced performance of PVDF-based solid electrolytes via PEO-induced α-to-amorphous phase transition enabling stable lithium batteries
Comfortable wearable thermoelectric generator with high output power
Optimization of Power Factor for a Screen-Printed Silver Selenide-Based Flexible Thermoelectric Film by Hot Pressing
Na/Bi-co-doping and heterogeneous interfaces leading to enhanced thermoelectric performance of p-type Mg3Sb2-based Zintls
Phonon relaxation effect by regeneration of nano-inclusions in SiGe for ultralow thermal conductivity and enhanced thermoelectric performance
Rattling of Ag Atoms Found in the Low-Temperature Phase of Thermoelectric Argyrodite Ag<sub>8</sub>SnSe<sub>6</sub>
Simultaneous optimization of power factor and thermal conductivity via charge transfer effect and enhanced scattering of phonons in Si80Ge20P1/CoSi2 composites
Effective Nonstoichiometric Strategy Combined Post-annealing Process for Boosting Thermoelectric Properties in n-Type PbTe
Realization of high cryogenic thermoelectric performance for MgAgSb base alloy by regulation heat-treatment process
Charge transfer engineering to achieve extraordinary power generation in GeTe-based thermoelectric materials
Enhancing thermoelectric performance in P-type Mg3Sb2-based Zintls through optimization of band gap structure and nanostructuring
Realizing high thermoelectric performance for p-type SiGe in medium temperature region via TaC compositing
Decoupled electron and phonon transport in thermoelectric GeTe compounded with multi-walled carbon nanotubes
Enhanced thermoelectric performance enabled by compositing ZrO <sub>2</sub> in n‐type SiGe alloy with low thermal conductivity
Thermoelectric enhancement of p-type Si <sub>80</sub>Ge <sub>20</sub> alloy via co-compositing of dual oxides: Respective regulation for power factor and thermal conductivity by β-Ga <sub>2</sub>O <sub>3</sub> and SiO <sub>2</sub> aerogel powders
Tailoring 5s2 lone pair-antibonding orbital interaction by Zr-doping to realize ultrahigh power factor in thermoelectric GeTe
Enhancement of thermoelectric performance in n-type Si90Ge10-based alloy by metallic Zn doping
Realization of high output power density in solution-processed flexible α-Cu2Se film by compositional off-stoichiometry and optimization of length
Synergistic Effect of Band and Nanostructure Engineering on the Boosted Thermoelectric Performance of n‐Type Mg<sub>3+</sub><i><sub>δ</sub></i>(Sb, Bi)<sub>2</sub> Zintls
Electronic “Bridge” Construction via Ag Intercalation to Diminish Catalytic Anisotropy for 2D Tin Diselenide Cathode Catalyst in Lithium–Oxygen Batteries
Sintering pressure as a “scalpel” to enhance the thermoelectric performance of MgAgSb
Single-defect phonons imaged by electron microscopy
Optimized Electronic Bands and Ultralow Lattice Thermal Conductivity in Ag and Y Codoped SnTe
Strategy of Extra Zr Doping on the Enhancement of Thermoelectric Performance for TiZr<sub><i>x</i></sub>NiSn Synthesized by a Modified Solid-State Reaction
Realizing a High <i>ZT</i> of 1.6 in N-Type Mg<sub>3</sub>Sb<sub>2</sub>-Based Zintl Compounds through Mn and Se Codoping
Boosting High Thermoelectric Performance of Ni-Doped Cu<sub>1.9</sub>S by Significantly Reducing Thermal Conductivity
Extraordinary thermoelectric performance in MgAgSb alloy with ultralow thermal conductivity
Dynamic Ag<sup>+</sup>-intercalation with AgSnSe<sub>2</sub> nano-precipitates in Cl-doped polycrystalline SnSe<sub>2</sub> toward ultra-high thermoelectric performance