Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Advanced Thermoelectric Materials and Devices, Chalcogenide Semiconductor Thin Films, Thermal properties of materials, and Thermal Radiation and Cooling Technologies.
SnSe nanosheets with Sn vacancies catalyse H2O2 production from water and oxygen at ambient conditions
Strain-coupled, crystalline polymer-inorganic interfaces for efficient magnetoelectric sensing
Mechanically driven selective organic oxidation using MOF-coated piezoelectric SnSe nanosheets
Thermoelectrocatalysis: an emerging strategy for converting waste heat into chemical energy
A Novel JAK2 Inhibitor OB756 in Treatment of Janus Kinase Inhibitor-Naive Patients with Myelofibrosis: A Phase 1/2, Open-Label, Multicenter Study
Mechanically Induced Highly Efficient Hydrogen Evolution from Water over Piezoelectric SnSe nanosheets
Realizing ultrahigh thermal conductivity in bimodal-diamond/Al composites via interface engineering
Enhanced photodetector at low-temperature via thermo-phototronic effect in N-type SnSe:Br single crystal
Exploring Materials in An Open Lab
Nanoscale bubble domains with polar topologies in bulk ferroelectrics
Thermo-phototronic effect in p-type Na-doped SnS single crystals for enhanced self-powered photodetectors
Band Sharpening and Band Alignment Enable High Quality Factor to Enhance Thermoelectric Performance in <i>n</i>-Type PbS
Ultrahigh Average <i>ZT</i> Realized in p-Type SnSe Crystalline Thermoelectrics through Producing Extrinsic Vacancies
Single‐Crystal SnSe Thermoelectric Fibers via Laser‐Induced Directional Crystallization: From 1D Fibers to Multidimensional Fabrics
Contrasting roles of small metallic elements M (M = Cu, Zn, Ni) in enhancing the thermoelectric performance of n-type PbM<sub>0.01</sub>Se
Extremely low thermal conductivity from bismuth selenohalides with 1D soft crystal structure
High thermoelectric performance in low-cost SnS <sub>0.91</sub> Se <sub>0.09</sub> crystals
Synergistically optimizing interdependent thermoelectric parameters of n-type PbSe through alloying CdSe
Amphoteric Indium Enables Carrier Engineering to Enhance the Power Factor and Thermoelectric Performance in <i>n</i>‐Type Ag<i><sub>n</sub></i>Pb<sub>100</sub>In<i><sub>n</sub></i>Te<sub>100+2</sub><i><sub>n</sub></i> (LIST)
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
Thermo-photoelectric coupled effect induced electricity in N-type SnSe:Br single crystals for enhanced self-powered photodetectors
Effects of temperature and pressure on the optical and vibrational properties of thermoelectric SnSe
Extraordinary thermoelectric performance in n-type manganese doped Mg3Sb2 Zintl: High band degeneracy, tuned carrier scattering mechanism and hierarchical microstructure
Realizing high performance n-type PbTe by synergistically optimizing effective mass and carrier mobility and suppressing bipolar thermal conductivity
Realizing High Thermoelectric Performance in p-Type SnSe through Crystal Structure Modification
Intrinsically Low Thermal Conductivity in BiSbSe<sub>3</sub>: A Promising Thermoelectric Material with Multiple Conduction Bands
The Atomic Circus: Small Electron Beams Spotlight Advanced Materials Down to the Atomic Scale
Remarkable Roles of Cu To Synergistically Optimize Phonon and Carrier Transport in n-Type PbTe-Cu<sub>2</sub>Te
Simultaneously enhancing the power factor and reducing the thermal conductivity of SnTe via introducing its analogues
Highly-anisotropic optical and electrical properties in layered SnSe