Area of research
Materials Chemistry · Catalysis
Research interest
Research interests include Catalysis, Zeolite, Materials science, Chemistry, Calcination, and Selectivity.
Implementation of a national AI technology program on cardiovascular outcomes and the health system
A Critical Assessment on Calculating Vibrational Spectra in Nanostructured Materials
Structure‐Activity Relationships in Highly Active Platinum‐Tin MFI‐type Zeolite Catalysts for Propane Dehydrogenation
Identifying key mononuclear Fe species for low-temperature methane oxidation
The role of surface oxidation and Fe–Ni synergy in Fe–Ni–S catalysts for CO<sub>2</sub> hydrogenation
Affecting an Ultra‐High Work Function of Silver
Ceria Entrapped Palladium Novel Composites for Hydrogen Oxidation Reaction in Alkaline Medium
Affecting an Ultra‐High Work Function of Silver
Tuning of catalytic sites in Pt/TiO2 catalysts for the chemoselective hydrogenation of 3-nitrostyrene
Composite Materials with Combined Electronic and Ionic Properties
A comparison of photocatalytic reforming reactions of methanol and triethanolamine with Pd supported on titania and graphitic carbon nitride
Molybdenum Speciation and its Impact on Catalytic Activity during Methane Dehydroaromatization in Zeolite ZSM‐5 as Revealed by Operando X‐Ray Methods
The effect of iron catalyzed graphitization on the textural properties of carbonized cellulose: Magnetically separable graphitic carbon bodies for catalysis and remediation
Supported bimetallic nano-alloys as highly active catalysts for the one-pot tandem synthesis of imines and secondary amines from nitrobenzene and alcohols
Molybdenum Speciation and its Impact on Catalytic Activity during Methane Dehydroaromatization in Zeolite ZSM‐5 as Revealed by Operando X‐Ray Methods
High performing and stable supported nano-alloys for the catalytic hydrogenation of levulinic acid to γ-valerolactone
Base Metal Catalyzed Graphitization of Cellulose: A Combined Raman Spectroscopy, Temperature-Dependent X-ray Diffraction and High-Resolution Transmission Electron Microscopy Study
Chemical deactivation of Cu-SSZ-13 ammonia selective catalytic reduction (NH3-SCR) systems
Chemical imaging of the sulfur-induced deactivation of Cu/ZnO catalyst bodies
Local Environment and Nature of Cu Active Sites in Zeolite-Based Catalysts for the Selective Catalytic Reduction of NO<sub><i>x</i></sub>
Ruthenium-catalyzed hydrogenation of levulinic acid: Influence of the support and solvent on catalyst selectivity and stability
Determining the storage, availability and reactivity of NH<sub>3</sub>within Cu-Chabazite-based Ammonia Selective Catalytic Reduction systems
Operando Raman spectroscopy study on the deactivation of Pt/Al2O3 and Pt–Sn/Al2O3 propane dehydrogenation catalysts
Pair distribution function computed tomography
Correlating Metal Poisoning with Zeolite Deactivation in an Individual Catalyst Particle by Chemical and Phase‐Sensitive X‐ray Microscopy
Intergrowth Structure and Aluminium Zoning of a Zeolite ZSM‐5 Crystal as Resolved by Synchrotron‐Based Micro X‐Ray Diffraction Imaging
Non-invasive imaging of the crystalline structure within a human tooth
Correlating Metal Poisoning with Zeolite Deactivation in an Individual Catalyst Particle by Chemical and Phase‐Sensitive X‐ray Microscopy
Intergrowth Structure and Aluminium Zoning of a Zeolite ZSM‐5 Crystal as Resolved by Synchrotron‐Based Micro X‐Ray Diffraction Imaging
Confirmation of Isolated Cu<sup>2+</sup> Ions in SSZ-13 Zeolite as Active Sites in NH<sub>3</sub>-Selective Catalytic Reduction