Area of research
Electrical and Electronic Engineering · Biomedical Engineering
Research interest
Research focused on Nanowire and Calcination, with related work in Doping, Perovskite (structure), Mesoporous material. Notable publications include 'Controllable Growth of Lead-Free All-Inorganic Perovskite Nanowire Array with Fast and Stable Near-Infrared Photodetection', 'Crystal-Defect-Dependent Gas-Sensing Mechanism of the Single ZnO Nanowire Sensors', and 'Ordered mesoporous WO3/ZnO nanocomposites with isotype heterojunctions for sensitive detection of NO2'.
Revitalizing CO2 photoreduction: Fine-tuning electronic synergy in ultrathin g-C3N4 with amorphous (CoFeNiMnCu)S2 high-entropy sulfide nanoparticles for enhanced sustainability
Exploring the frontiers of electrochemical CO2 conversion: A comprehensive review
Sensitive Cross-Linked SnO2:NiO Networks for MEMS Compatible Ethanol Gas Sensors
An α-Fe<sub>2</sub>O<sub>3</sub>/NiO p–n hierarchical heterojunction for the sensitive detection of triethylamine
Controllable Growth of Lead-Free All-Inorganic Perovskite Nanowire Array with Fast and Stable Near-Infrared Photodetection
rGO decorated W doped BiVO4 novel material for sensing detection of trimethylamine
rGO decorated CdS/CdO composite for detection of low concentration NO2
Crystal-Defect-Dependent Gas-Sensing Mechanism of the Single ZnO Nanowire Sensors
Ordered mesoporous WO3/ZnO nanocomposites with isotype heterojunctions for sensitive detection of NO2
One-step electrospun SnO2/MOx heterostructured nanomaterials for highly selective gas sensor array integration
High-performance enhancement-mode thin-film transistors based on Mg-doped In2O3 nanofiber networks
Approaching the Hole Mobility Limit of GaSb Nanowires
Developing controllable anisotropic wet etching to achieve silicon nanorods, nanopencils and nanocones for efficient photon trapping