Area of research
Biomedical Engineering · Electrical and Electronic Engineering
Research interest
Research focused on Adsorption and Acetylene, with related work in Microporous material, Nanocages, Selectivity. Notable publications include 'Fine pore engineering in a series of isoreticular metal-organic frameworks for efficient C2H2/CO2 separation', 'Ultra-high surface area and nitrogen-rich porous carbons prepared by a low-temperature activation method with superior gas selective adsorption and outstanding supercapacitance...', and 'Multifunctional LDH/Co9S8 heterostructure nanocages as high-performance lithium–sulfur battery cathodes with ultralong lifespan'.
Ultraselective C–O Hydrogenolysis of Biomass-Based Compounds under Ambient Pressure and at Low Temperature via Hydrogen Spillover over the Pd–SO<sub>4</sub><sup>2–</sup> Interface
Oxygen-doped carbon-supported palladium nanoparticles boost the tandem hydrogenation–acetalization–hydrogenolysis of phenols and diphenyl ethers to cyclohexyl ethers
Selective Hydrogenolysis of Biomass‐Derived Aromatic Alcohols over 2D‐Mo<sub>2</sub>CO<sub>x</sub> MXene by a Reversible Redox‐Relay Mechanism
Palladium-Supported Surface-Oxidized Mo<sub>2</sub>C MXenes for the Tandem Hydrogenation–Hydrogenolysis of Furfurals via Hydrogen Spillover
Cobalt disulfide promotes the selective rearrangement–hydrodeoxygenation of furan alcohols to cyclopentenones
Palladium Single Atom‐supported Covalent Organic Frameworks for Aqueous‐phase Hydrogenative Hydrogenolysis of Aromatic Aldehydes via Hydrogen Heterolysis
Switching between Hydrogenative Hydrogenolysis and Rearrangement of Furfurals via Hydrogen Pressure-Driven Acid–Base Transformation over Br–Pt Pairs
Brønsted Acid-Triggered Fast Synthesis Pathway of Furfural to Ethyl Levulinate by PtZn Supported on ZSM-5 Nanosheets
Enhancing Tandem Partial Hydrogenation–Hydrolysis of Diphenyl Ethers to Cyclohexanols with Surface-Oxidized MXene
Hydrogen-mediated acid-base transformation of Ni supported Mo<sub>5</sub>N<sub>6</sub> for hydrogenative rearrangement of furfural derivatives
Palladium Single Atom‐supported Covalent Organic Frameworks for Aqueous‐phase Hydrogenative Hydrogenolysis of Aromatic Aldehydes via Hydrogen Heterolysis
A one-pot synthesis of high-density biofuels through bifunctional mesoporous zeolite-encapsulated Pd catalysts
Intermetallic Palladium–Zinc Nanoparticles for the Ultraselective Hydrogenative Rearrangement of Furan Compounds
Catalytic Hydrodehydroxylation of Biomass-Related Chemicals via Water-Mediated Hydrogen Heterolysis over a Pd–S Interface
Facile synthesis of graphene quantum dots with red emission and high quantum yield
Phosphate-supported palladium single atom and nanoparticle boost ambient temperature tandem hydrogenolysis–hydrogenation of furan alcohols/aldehydes
Review on Metal–Acid Tandem Catalysis for Hydrogenative Rearrangement of Furfurals to C5 Cyclic Compounds
Efficient one‐pot tandem conversion of saccharides to 2,5‐dimethylfuran by adjusting the wettability of 2DMOF catalysts
Fine pore engineering in a series of isoreticular metal-organic frameworks for efficient C2H2/CO2 separation
2D MOF with Compact Catalytic Sites for the One‐pot Synthesis of 2,5‐Dimethylfuran from Saccharides via Tandem Catalysis
H<sup>+</sup>−H<sup>−</sup> Pairs in Partially Oxidized MAX Phases for Bifunctional Catalytic Conversion of Furfurals into Linear Ketones
Green synthesis of polydopamine functionalized magnetic mesoporous biochar for lipase immobilization and its application in interesterification for novel structured lipids production
Bifunctional Role of Hydrogen in Aqueous Hydrogenative Ring Rearrangement of Furfurals over Co@Co-NC
Nickel-cobalt Cyclo-tetraphosphate decorated hollow carbon nanocages as effective polysulfide promoters for stable Lithium-Sulfur batteries
Dense open metal sites in a microporous metal–organic framework for deep desulfurization with record‐high sulfur dioxide storage density
Iodine‐modified Pt nanoparticles accelerate the hydrogenative ring‐opening of furfurals to linear alcohols
2D MOF with Compact Catalytic Sites for the One‐pot Synthesis of 2,5‐Dimethylfuran from Saccharides via Tandem Catalysis
Promoted Hydrogenolysis of Furan Aldehydes to 2,5‐Dimethylfuran by Defect Engineering on Pd/NiCo<sub>2</sub>O<sub>4</sub>
A 2D metal–organic framework with dual‐acidic sites for the valorization of saccharides to 5‐hydroxymethylfurfural
H<sup>+</sup>−H<sup>−</sup> Pairs in Partially Oxidized MAX Phases for Bifunctional Catalytic Conversion of Furfurals into Linear Ketones