Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research focused on Metal-organic framework and Biocomposite, with related work in BET theory, Yeast, Esterase. Notable publications include 'Application of metal and metal oxide nanoparticles@MOFs', 'Enhanced Activity of Enzymes Encapsulated in Hydrophilic Metal–Organic Frameworks', and 'How Reproducible are Surface Areas Calculated from the BET Equation?'.
Enhanced Bioactivity of Enzyme/MOF Biocomposite via Host Framework Engineering
Fabrication of 3D Oriented MOF Micropatterns with Anisotropic Fluorescent Properties
How Reproducible are Surface Areas Calculated from the BET Equation?
Water Sorption Controls Extreme Single‐Crystal‐to‐Single‐Crystal Molecular Reorganization in Hydrogen Bonded Organic Frameworks
Insights into the Interaction between Immobilized Biocatalysts and Metal–Organic Frameworks: A Case Study of PCN-333
How Reproducible Are Surface Areas Calculated from the BET Equation?
How Reproducible Are Surface Areas Calculated from the BET Equation?
Modulation of metal-azolate frameworks for the tunable release of encapsulated glycosaminoglycans
Highly Active Gas Phase Organometallic Catalysis Supported Within Metal–Organic Framework Pores
Postsynthetic Metalated MOFs as Atomically Dispersed Catalysts for Hydroformylation Reactions
Enhanced Activity of Enzymes Encapsulated in Hydrophilic Metal–Organic Frameworks
Control of Structure Topology and Spatial Distribution of Biomacromolecules in Protein@ZIF-8 Biocomposites
An Enzyme‐Coated Metal–Organic Framework Shell for Synthetically Adaptive Cell Survival
Application of metal and metal oxide nanoparticles@MOFs
ZnO as an Efficient Nucleating Agent for Rapid, Room Temperature Synthesis and Patterning of Zn-Based Metal–Organic Frameworks
Scrutinizing Low-Spin Cr(II) Complexes