Area of research
Materials Chemistry · Catalysis
Research interest
Research interests include Catalytic Processes in Materials Science, Catalysis and Oxidation Reactions, 3D Printing in Biomedical Research, and Microfluidic and Bio-sensing Technologies.
Polydimethylsiloxane micropatterning-aided multi-size biomimetic tumor spheroid-on-a-chip for investigating chemotherapy and photodynamic therapy
Synergistic enhancement of coke resistance in methane dry reforming via oxygen vacancies and spatial confinement on Ni-ZrO2/DMS catalysts
Single Fe atom anchored by N vacancy of C3N4 activates PMS for efficient degradation of refractory organics: The key role of non-radical pathway through 1O2 and Fe(IV)=O
One stone four birds: The redox and acid-basic site integral regulation by La in Cu-SAPO-34 for boosting NO reduction
CeNbOx/SSZ-13 catalysts with zeolite-protected active sites for broad-temperature NH3-SCR and enhanced resistance to K-poisoning
An integrated microfluidic pulmonary alveolus system for gradient-controlled investigation of nanoplastic-triggered lung inflammation and injury dynamics
Synergy of F-Fe dual sites in KFeF3 promoting Fenton-like cycle and refractory organics degradation through direct electron transfer
Design and mechanism of a highly anti-carbon Pt/ITQ-1 catalyst for o-xylene catalytic oxidation
An Integrated Microfluidic Biomimetic Tumor-on-a-Chip for Wide-Range Screening of Chemotherapy and Photodynamic Therapy.
Electronic Modulation via Silicon Incorporation in MnSmO <sub> <i>x</i> </sub> Catalysts for Enhanced Low-Temperature NH <sub>3</sub> -SCR Performance
Local electronic modulation by single-atom Cu for CO2 hydrogenation to light olefins
Unveiling the confinement and interface effect on low temperature degradation of toluene over mesoporous zeolite encapsulated Pt-CeO2 catalyst
Constructing highly active zeolite encapsulated PdAg alloy catalysts for typical VOCs deep oxidation: The role of electron-structure interaction
Alkali-resistant catalytic reduction of NO over CeO2-WO3/MCM-22 supported catalyst by releasing Brønsted acid sites
Construction of highly active layered zeolite MCM-22 loading Pt catalyst for toluene deep oxidation
Unlocking Mixed-Metal Oxides Active Centers via Acidity Regulation for K&SO<sub>2</sub> Poisoning Resistance: Self-Detoxification Mechanism of Zeolite-Confined <i>de</i>NO<i><sub>x</sub></i> Catalysts
Design dual confinement Ni@S-1@SiO2 catalyst with enhanced carbon resistance for methane dry reforming
Promoting metal oxides–zeolite electron interaction on MnCeOx/HY catalyst for boosting nitrogen oxides reduction
Three-dimensionally ordered macroporous CeZrVOx catalyst with remarkable NH3-SCR performance and SO2 tolerance: Key roles of the morphology and highly dispersed V species
Catalytic cycle network: Boosting CO2 hydrogenation to propane
Revolutionizing CH4-CO2 reforming: Resilient La2O3-Ni@MgAl2O4 catalyst with dual-function synergy
Discovering the remarkable deNOx activity and anti-K poisoning of MnFeOx/H-Beta composite catalyst
Tailored engineering of intracrystalline mesopores for boosting multicomponent volatile organic compounds simultaneous deep oxidation
An effective strategy for promoting toluene oxidation stability: Recrystallization Pt confinement and zeolite dealumination
Facile and Rapid Microcontact Printing of Additive-Free Polydimethylsiloxane for Biological Patterning Diversity.
A heterotypic tumor-on-a-chip platform for user-friendly combinatorial chemotherapeutic testing.
High‐Efficient Microfluidic Single‐Cell Trapping and Arraying with Absolute Sequential Capture and High Success Rate of Perfect Capture
Preparation of highly dispersed Pt catalyst by CeOx 'islands' modification of dendritic mesoporous SiO2: CO as a probe molecule
Synthetic Pt-Fe(OH)x catalysts by one-pot method for CO catalytic oxidation
Coke-resistance over Rh–Ni bimetallic catalyst for low temperature dry reforming of methane