Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Materials science, Raman spectroscopy, Heterojunction, Supercapacitor, Photoluminescence, and Epitaxy.
Chirality-transferred epitaxy of circular polarization-sensitive ReS2 monolayer single crystals
CeO2 regulates electronic structure of Co Fe alloy surface Interface on nitrogen-doped carbon to enhance oxygen reduction reaction in zinc-air battery
In-plane optical anisotropy in PbI2 nanosheets induced by CrOCl
Construction of electron-interactive CoMoO4 @ CoP core–shell structure on boron-doped graphene aerogel as strongly interface coupled hybrid electrodes for high flexible supercapacitor
Guiding nitrogen doped vanadium pentoxide nanoclusters on cobalt sulfide nano-flakiness as stable seamless interface anode toward highly energy density and durable asymmetric supercapacitors
Constructing Slip Stacking Diversity in Van der Waals Homobilayers
Amino-acid surface modulation of cobalt-tin sulfide and band broadening in cobalt-iron selenide heterostructure for high-performing asymmetric supercapacitor
Interfacial Effects on the Photoluminescence Properties of Epitaxial Monolayer MoS<sub>2</sub> on MoO<sub>2</sub> on C‐Sapphire
Stabilizing sulfur doped manganese oxide active sites with phosphorus doped hierarchical nested square carbon for efficient asymmetric supercapacitor
Lateral and Vertical Morphology Engineering of Low‐Symmetry, Weakly‐Coupled 2D ReS<sub>2</sub>
In-plane anisotropy in van der Waals epitaxial MoS2 on MoO2(010)
Temperature−Dependent Raman Scattering Investigation on vdW Epitaxial PbI2/CrOCl Heterostructure
Changes in the photoluminescence of ultra-weak interlayer coupled MoSe2/PbI2 van der Waals heterostructures
Hexagonal Single-Crystal CoS Nanosheets: Controllable Synthesis and Tunable Oxygen Evolution Performance
Identifying the crystal orientation of epitaxially grown MoO2 nanoflakes on c-sapphire