Area of research
Mechanical Engineering · Aerospace Engineering
Research interest
Research interests include High Entropy Alloys Studies, Metallic Glasses and Amorphous Alloys, High-Temperature Coating Behaviors, and Glass properties and applications.
Strength-ductility synergy in medium-entropy alloys via harnessing trace air in additive manufacturing.
Self-Adaptive Nonstoichiometric High-Entropy Intermetallics Enable Durable Oxygen Evolution under Industrial Current Densities.
Tailoring Gradient Precipitation Structure To Overcome the Strength-Corrosion Fatigue Trade-Off in Ultrahigh-Strength Al Alloys
Electronic mechanism for the enhanced hydrogen evolution reaction activity of Cu alloys
Nanoporous high-entropy Mn-Fe-Co-Ni amorphous oxide: Boosting oxygen evolution efficiency through electron spin-polarization
Revealing atomic strengthening mechanism in CoNiV medium-entropy alloy via machine learning-guided simulations
Unveiling the atomistic mechanism of oxide scale spalling in heat-resistant alloys.
Enhancing properties of high-entropy alloys via manipulation of local chemical ordering
A metastable Fe48Co10Cr10Mn32 high-entropy alloy with good damping capacity within an ultra-large temperature regime
Frictional shear stress-induced incomplete martensitic transformation in mono-crystalline B2-CuZr spherulites
Elastic strain-induced amorphization in high-entropy alloys.
Continuous polyamorphic transition in high-entropy metallic glass.
Lightweight single-phase Al-based complex concentrated alloy with high specific strength.
Unveiling the atomistic mechanism of oxide scale spalling in heat-resistant alloys
Enhancing cryogenic yield strength and ductility of the Al0.1CoCrFeNi high-entropy alloy by synergistic effect of nanotwins and dislocations
Strong work-hardenable body-centered-cubic high-entropy alloys at cryogenic temperature
Effects of trace elements on mechanical properties of the TiZrHfNb high-entropy alloy
Clustering-mediated enhancement of glass-forming ability and plasticity in oxygen-minor-alloyed Zr-Cu metallic glasses
Influences of Cu on microstructure and mechanical properties in Fe–Ni–Al ultra-strong maraging steels
Manipulating the ordered oxygen complexes to achieve high strength and ductility in medium-entropy alloys.
Boosting Oxygen-Evolving Activity via Atom-Stepped Interfaces Architected with Kinetic Frustration.
A bar-joint model based on the corrected resistive force theory for artificial flagellated micro-swimmers propelled by acoustic waves.
Metastable high entropy alloys
Configurational Entropy Effects on Glass Transition in Metallic Glasses.
Self-supported efficient hydrogen evolution catalysts with a core-shell structure designed <i>via</i> phase separation.
Stabilizing nanocrystals via higher entropy interfaces
Simultaneously enhancing the strength and ductility of medium-entropy alloys via manipulating ordered oxygen complexes
Local chemical fluctuation mediated ultra-sluggish martensitic transformation in high-entropy intermetallics.
Substantially enhanced plasticity of bulk metallic glasses by densifying local atomic packing
IrW nanochannel support enabling ultrastable electrocatalytic oxygen evolution at 2 A cm<sup>-2</sup> in acidic media.