Area of research
Biomaterials · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Advanced Cellulose Research Studies, Supercapacitor Materials and Fabrication, Electrospun Nanofibers in Biomedical Applications, and Advanced Sensor and Energy Harvesting Materials.
Nickel(II) and copper(II) complexes containing bis(2-pyridylmethyl)-2,2′-thiodiethanethiol ligands for electro- and photocatalytic hydrogen production from water
Synthesis, characterization and investigation electrocatalytic property of nickel(II) complex based on 1,2-bis(diphenylphosphino)ethane for hydrogen generation and hydrogen oxidation
Engineering Robust, Hierarchical, and Biodegradable Cellulose Foams for Smart Packaging
Near-infrared-II Ag-based quantum dots for fluorescence imaging.
Bis(2‐Pyridylmethyl)‐1,2‐ Thiobenzene Metal Complexes as Efficient Electrocatalyst and Photocatalyst for Hydrogen Production
Biomass-based functional materials for rechargeable Zn-ion batteries
Bacterial cellulose/chitosan composite materials for biomedical applications
Multifunctional nanocellulose-based electromagnetic interference shielding composites: Design, functionality, and future prospects
Au-Fe<sub>3</sub>O<sub>4</sub> Janus nanoparticles for imaging-guided near infrared-enhanced ferroptosis therapy in triple negative breast cancer.
Correction to "Zwitterion-Coated Ultrasmall MnO Nanoparticles Enable Highly Sensitive <i>T</i><sub>1</sub>-Weighted Contrast-Enhanced Brain Imaging".
Sustainable polysaccharide-based materials for intelligent packaging
Strong, conductive, and freezing-tolerant polyacrylamide/PEDOT:PSS/cellulose nanofibrils hydrogels for wearable strain sensors
Cellulose nanofibril aerogels reinforcing polymethyl methacrylate with high optical transparency
Engineering lignocellulose-based composites for advanced structural materials
Fluorinated Iron Metal-Organic Frameworks for Activatable <sup>19</sup>F Magnetic Resonance Imaging and Synergistic Therapy of Tumors.
Multifunctional Superelastic, Superhydrophilic, and Ultralight Nanocellulose‐Based Composite Carbon Aerogels for Compressive Supercapacitor and Strain Sensor
Cellulose Nanopaper: Fabrication, Functionalization, and Applications
Biopolymer-based hydrogel electrolytes for advanced energy storage/conversion devices: Properties, applications, and perspectives
Strong and highly conductive cellulose nanofibril/silver nanowires nanopaper for high performance electromagnetic interference shielding
Strong, flexible, and highly conductive cellulose nanofibril/PEDOT:PSS/MXene nanocomposite films for efficient electromagnetic interference shielding
Sustainable preparation of lignocellulosic nanofibrils and cellulose nanopaper from poplar sawdust
Recent advances in engineering iron oxide nanoparticles for effective magnetic resonance imaging.
Sustainable production of cellulose nanofibrils from Kraft pulp for the stabilization of oil-in-water Pickering emulsions
Zwitterion-Coated Ultrasmall MnO Nanoparticles Enable Highly Sensitive <i>T</i><sub>1</sub>-Weighted Contrast-Enhanced Brain Imaging.
Photoinduced Superhydrophilicity of Gd-Doped TiO<sub>2</sub> Ellipsoidal Nanoparticles Boosts <i>T</i><sub>1</sub> Contrast Enhancement for Magnetic Resonance Imaging.
Recent advances in cellulose and its derivatives for oilfield applications
Cellulose based composite foams and aerogels for advanced energy storage devices
Lignin-containing cellulose nanomaterials: preparation and applications
Lignin-based electrodes for energy storage application
Conductive PEDOT:PSS/cellulose nanofibril paper electrodes for flexible supercapacitors with superior areal capacitance and cycling stability