Area of research
Biomedical Engineering · Biomaterials
Research interest
Research interests include Advanced Cellulose Research Studies, Ionic liquids properties and applications, Catalysis for Biomass Conversion, and Lignin and Wood Chemistry.
Development of Bio-Based Thermosetting Resins from Maltodextrin-Itaconate Systems Toward Styrene-Free Unsaturated Polyesters.
Cellulose acetate composites with bamboo cellulose nanofibers: crystallinity preservation during tetrabutylammonium salt-catalyzed surface acetylation.
A low-viscous and flowable zwitterionic liquid.
Dual-Functionalized Zwitterionic Polymers for Cell Cryopreservation.
Fully bio-based cellulose ester synthesis from natural aldehydes <i>via</i> aerobic oxidation.
Degradation behavior in soil and mechanical properties of bagasse monoesters with different acyl chain lengths and residual hydroxy contents
Stabilizing protein pharmaceuticals by imidazolium-type zwitterions.
Acetyl Cellooligosaccharide-Based Block Copolymers for Toughening Cellulose Triacetate/Poly(ε-caprolactone) Biodegradable Blends
Cell Damage Mechanisms during Cryopreservation in a Zwitterion Solution and Its Alleviation by DMSO.
Zwitterionic liquid <i>vs.</i> ionic liquid analogue biomass pretreatment ability
Phosphate-type zwitterionic liquid.
Facile Separation of Acetic Acid from 1-Ethyl-3-methylimidazolium Acetate Ionic Liquid with the Aid of a Protic Solvent.
Guidelines of Designing Zwitterions for One-Pot Bioethanol Production from Biomass
Cellulose processing in ionic liquids from a materials science perspective: turning a versatile biopolymer into the cornerstone of our sustainable future
Composite of Cellulose-Nanofiber-Reinforced Cellulose Acetate Butyrate: Improvement of Mechanical Strength by Cross-Linking of Hydroxyl Groups
Continuous process of cellulose dissolution and transesterification reaction catalysed by ionic liquid in twin screw extruder
Dehydrogenative silylation of cellulose in ionic liquid
Controlled Allocation of Aromatic/Aliphatic Substituents to Polysaccharides and Lignin in Sugarcane Bagasse via Successive Homogeneous Transesterification Using Ionic Liquid.
Force-Induced Alignment of Nanofibrillated Bacterial Cellulose for the Enhancement of Cellulose Composite Macrofibers.
Aryloxy Ionic Liquid-Catalyzed Homogenous Esterification of Cellulose with Low-Reactive Acyl Donors.
Reducing Cellulose Crystallinity with a Noncellulose-Dissolving Solid Zwitterion and Its Application for Biomass Pretreatment
Direct Conversion of Sugarcane Bagasse into an Injection-Moldable Cellulose-Based Thermoplastic via Homogeneous Esterification with Mixed Acyl Groups
Essential Requirements of Biocompatible Cellulose Solvents
Green Conversion of Total Lignocellulosic Components of Sugarcane Bagasse to Thermoplastics Through Transesterification Using Ionic Liquid
Selective Modification of Aliphatic Hydroxy Groups in Lignin Using Ionic Liquid
Direct Synthesis of Full-Biobased Cellulose Esters from Essential Oil Component α,β-Unsaturated Aldehydes
Cellulose Preferentially Dissolved over Xylan in Ionic Liquids through Precise Anion Interaction Regulated by Bulky Cations
Low waste process of rapid cellulose transesterification using ionic liquid/DMSO mixed solvent: Towards more sustainable reaction systems.
High loading of trimethylglycine promotes aqueous solubility of poorly water-soluble cisplatin.
Automatic Redirection of Carbon Flux between Glycolysis and Pentose Phosphate Pathway Using an Oxygen-Responsive Metabolic Switch in <i>Corynebacterium glutamicum</i>