Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Optical Network Technologies, Advanced Thermoelectric Materials and Devices, Advanced Photonic Communication Systems, and Titanium Alloys Microstructure and Properties.
Electricity Generation From Ambient Water Evaporation in the Absence of Sunlight via PVA‐Based Porous Hydrogels
Evapolectrics: Direct Harvesting of Electricity from Evaporation Using Thermoelectrics
Adsorption of cationic organic dyes from aqueous solutions by sulfonated covalent organic frameworks: Characterization and mechanistic explanations
Nano-size core-shell magnetic SO₃H-functionalized covalent organic frameworks via a functional defect strategy for cationic dye purification: Adsorption behavior and mechanism
Emerging Opportunities for Ferroelectric Field‐Effect Transistors: Integration of 2D Materials
Interface-engineered ferroelectricity of epitaxial Hf0.5Zr0.5O2 thin films
Recent advances of sustainable Short-chain length polyhydroxyalkanoates (Scl-PHAs) – Plant biomass composites
Interstitial carbon-platinum electronic metal-support interaction structure boost synergistic removal of O3 and CH3SH via surface atomic oxygen
Thermoelectric device performance beyond average ZT: Holistic consideration of materials and design
Low-Temperature Fabrication of Porous Mg-Zn Foams by a Reactive Sintering Powder Metallurgy Approach
Improving carrier mobility in two-dimensional semiconductors with rippled materials
A highly flexible form-stable silicone-octadecane PCM composite for heat harvesting
Upcycling Silicon Photovoltaic Waste into Thermoelectrics
Non-equilibrium strategy for enhancing thermoelectric properties and improving stability of AgSbTe2
Integrating recyclable polymers into thermoelectric devices for green electronics
Designing good compatibility factor in segmented Bi0.5Sb1.5Te3 – GeTe thermoelectrics for high power conversion efficiency
Flexible elemental thermoelectrics with ultra-high power density
Atomic layer deposition of Al2O3 thin films for corrosion protections of additive manufactured and wrought stainless steels 316L
Thermoelectric materials and transport physics
Suppressing Ge-vacancies to achieve high single-leg efficiency in GeTe with an ultra-high room temperature power factor
Tailoring the phase transition temperature to achieve high-performance cubic GeTe-based thermoelectrics
Achieving high thermoelectric quality factor toward high figure of merit in GeTe
Effective enhancement of thermoelectric and mechanical properties of germanium telluride <i>via</i> rhenium-doping
Characterization of the histone methyltransferase PRDM9 using biochemical, biophysical and chemical biology techniques