- Catalytic Processes in Materials Science
- Catalysis and Oxidation Reactions
- Advanced Photocatalysis Techniques
- Gas Sensing Nanomaterials and Sensors
- Electrocatalysts for Energy Conversion
- Catalysis and Hydrodesulfurization Studies
- Nanomaterials for catalytic reactions
- Advanced Memory and Neural Computing
- Chalcogenide Semiconductor Thin Films
- Oxidative Organic Chemistry Reactions
- Inorganic Chemistry and Materials
- Ammonia Synthesis and Nitrogen Reduction
- Metal-Organic Frameworks: Synthesis and Applications
- Perovskite Materials and Applications
- Electronic and Structural Properties of Oxides
- Industrial Gas Emission Control
- Catalysts for Methane Reforming
- Analytical Chemistry and Sensors
- Crystal Structures and Properties
- Advanced biosensing and bioanalysis techniques
- Molecular Sensors and Ion Detection
Xi'an Jiaotong University
2023-2025
State Key Laboratory of Multiphase Flow in Power Engineering
2025
The widespread presence of formaldehyde (HCHO) pollutant has aroused significant environmental and health concerns. catalytic oxidation HCHO into CO2 H2O at ambient temperature is regarded as one the most efficacious environmentally friendly approaches; to achieve this, however, accelerating intermediate formate species formation decomposition remains an ongoing obstacle. Herein, a unique tandem system with outstanding performance in low-temperature proposed on well-structured Pd/Mn3O4–MnO...
Oxygenated volatile organic compounds (OVOCs), emitted in large quantities by the chemical industry, are a major contributor to formation of ozone and subsequent particulate matter. For efficient catalytic oxidation OVOCs, challenges molecular activation intermediate inhibition remain. The construction bifunctional active sites with specific structures offers promising way overcome these problems. Here, Pd@Layered-CoOx/MFI catalyst core–shell was rationally fabricated though two-step ligand...
Developing efficacious catalysts with superior Cl resistance and polychlorinated byproduct inhibition capability is crucial for realizing the environmentally friendly purification of chlorinated volatile organic compounds (CVOCs). Activating CVOC molecules desorbing species by modulating metal-oxygen property a promising strategy to fulfill these. Herein, bifunctional CoRu/Al
Light alkanes make up a class of widespread volatile organic compounds (VOCs), bringing great environmental hazards and health concerns. However, the low-temperature catalytic destruction light is still challenge to settle due their high reaction inertness weak polarity. Herein, Co3O4 sub-nanometer porous sheet (Co3O4-SPS) was fabricated comprehensively compared with its bulk counterparts in oxidation C3H8. Results demonstrated that abundant low-coordinated Co atoms on Co3O4-SPS surface...
Light alkanes (LAs), typical VOCs existing in both stationary and mobile sources, pose significant environmental concerns. Although noble metal catalysts demonstrate strong C–H bond activation, their effectiveness degrading LAs is hindered by inherent challenges, including poor chemical stability water resistance. Here, from a new perspective, we propose feasible strategy that adjusting the lengths within Pd clusters through partial substitution of smaller radius 3d transition metals (3dTMs)...
Abstract Achieving active and stable heterogeneous catalysts by encapsulating noble metal species within zeolites is highly promising for high utilization cost efficiency in thermal environmental catalytic reactions. Ru, considered an economical alternative with comparable performance, faces great challenges MFI‐type microporous due to its cohesive energy mobility. Herein, innovative strategy was explored that couples hydrothermal situ ligand protection stepwise calcination a flowing...
Abstract Achieving active and stable heterogeneous catalysts by encapsulating noble metal species within zeolites is highly promising for high utilization cost efficiency in thermal environmental catalytic reactions. Ru, considered an economical alternative with comparable performance, faces great challenges MFI‐type microporous due to its cohesive energy mobility. Herein, innovative strategy was explored that couples hydrothermal situ ligand protection stepwise calcination a flowing...