Area of research
Mechanical Engineering · Materials Chemistry
Research interest
Research interests include Titanium Alloys Microstructure and Properties, Advanced materials and composites, Intermetallics and Advanced Alloy Properties, and Aluminum Alloys Composites Properties.
Effects of PZT Reinforcement on the Properties of Fe-Based Composites Fabricated by Powder Metallurgy
Interface Phonon Transmission Behaviors and Their Resultant Influence on Thermal Transport in Cu/Diamond Composites
Kinetics of Oxidation of Binary Ti-Cu Alloys in the 600–800 °C Temperature Range
Study on Microstructure and Hydrogen Storage Properties of Mg80Ni16−xAlxY4 (x = 2, 4, 8) Alloys
Understanding on the Correlation between Mechanical Properties and Thermal Conductivity of Hot‐Forged Copper/Diamond Composites
Effect of Cryogenic Treatment on Microstructure and Mechanical Properties of Al0.6CrFe2Ni2 Dual-Phase High-Entropy Alloy
Yield of Annealing on the Properties of the Ti-5Al-2.5Fe Alloy Produced by Powder Forging
Fabrication and Characterization of In Situ Ti-6Al-4V/TiB Composites by the Hot-Pressing Method using Recycled Metal Chips
Modulating carbon-supported transition metal oxide by electron-giving and electron-absorbing functional groups towards efficient overall water splitting
Ten Thousand-Cycle Ultrafast Energy Storage of Wadsley–Roth Phase Fe–Nb Oxides with a Desolvation Promoting Interfacial Layer
3D Hydrangea Macrophylla-like Nickel–Vanadium Metal–Organic Frameworks Formed by Self-Assembly of Ultrathin 2D Nanosheets for Overall Water Splitting
A novel, noble-metal-free core-shell structure Ni–P@C cocatalyst modified sulfur vacancy-rich ZnIn2S4 2D ultrathin sheets for visible light-driven photocatalytic hydrogen evolution
Metal organic frameworks constructed heterojunction with α-NiS-β-NiS/CdS: The effect of organic-ligand in UiO-66 for charge transfer of photocatalytic hydrogen evolution
Dual synergistic effect of S-doped carbon bridged semi crystalline MILN-based Co3S4/MnS2 nanostructure in electrocatalytic overall water splitting
Path of electron transfer created in S-doped NH<sub>2</sub>-UiO-66 bridged ZnIn<sub>2</sub>S<sub>4</sub>/MoS<sub>2</sub> nanosheet heterostructure for boosting photocatalytic hydrogen evolution
Microstructure characterization of a high strength Ti–6Al–4V alloy prepared from a powder mixture of TiH2 and 60Al40V masteralloy powders
Adjustable anchoring of Ni/Co cations by oxygen-containing functional groups on functionalized graphite paper and accelerated mass/electron transfer for overall water splitting
A novel ligand with –NH<sub>2</sub> and –COOH-decorated Co/Fe-based oxide for an efficient overall water splitting: dual modulation roles of active sites and local electronic structure
Comparison of hot deformation behaviour and microstructural evolution for Ti-5Al-5V-5Mo-3Cr alloys prepared by powder metallurgy and ingot metallurgy approaches
Mechanical properties and microstructure of Ti-Mn alloys produced via powder metallurgy for biomedical applications.
Strong and Ductile Ti-6Al-4V Alloy Produced by Hot Pressing of Ti-6Al-4V Swarf
Titanium-Doped Copper-Diamond Composites Fabricated by Hot-Forging of Powder Mixtures or Cold-Pressed Powder Preforms
Comparison of the Cracking Behavior of Powder Metallurgy and Ingot Metallurgy Ti-5Al-5Mo-5V-3Cr Alloys during Hot Deformation.
Heat Treatment, Impact Properties, and Fracture Behaviour of Ti-6Al-4V Alloy Produced by Powder Compact Extrusion.