Area of research
Biomedical Engineering · Biomaterials
Research interest
Research interests include Materials science, Nanofiber, Anode, Electrospinning, Chemical engineering, and Composite material.
Highly stretchable, self-adhesive, conductive, and tough hydrogel reinforced with cellulose nanofibers for wearable biosensor and ultrasonic nanogenerator
Novel Biomimetic “Spider Web” Robust, Super‐Contractile Liquid Crystal Elastomer Active Yarn Soft Actuator
Gel polymer electrolyte based on deep eutectic solvent in flexible Zn-air batteries enables dendrite-free Zn anode
Highly permeable and ultrastretchable E-textiles with EGaIn-superlyophilicity for on-skin health monitoring, joule heating, and electromagnetic shielding
Electrospun PVB/AVE NMs as mask filter layer for win-win effects of filtration and antibacterial activity
Photodynamic activity enhanced by in situ biosynthetic BC/CQDs@PCN-224 membranes through FRET strategy
Biomass aerogel composite containing BaTiO3 nanoparticles and MXene for highly sensitive self-powered sensor and photothermal antibacterial applications
Highly Stretchable and Fluorescent Visualizable Thermoplastic Polyurethane/Tetraphenylethylene Plied Yarn Strain Sensor with Heterogeneous and Cracked Structure for Human Health Monitoring
Study on the Construction of Interlayer Adjustable C@MoS<sub>2</sub> Fiber Anode by Biomass Confining and its Lithium/Sodium Storage Mechanism
Hierarchically Designed Super‐Elastic Metafabric for Thermal‐Wet Comfortable and Antibacterial Epidermal Electrode
Multifunctional biomass composite aerogel co-modified by MXene and Ag nanowires for health monitoring and synergistic antibacterial applications
Biomass-derived nanocellulose aerogel enable highly efficient immobilization of laccase for the degradation of organic pollutants
Manufacturing Technics for Fabric/Fiber-Based Triboelectric Nanogenerators: From Yarns to Micro-Nanofibers
Amphiphilic sodium alginate-polylysine hydrogel with high antibacterial efficiency in a wide pH range
Alkaline sodium polyacrylate-starch hydrogels with tolerance to cold conditions for stretchable zinc-air batteries
Dual-functional biocatalytic membrane containing laccase-embedded metal-organic frameworks for detection and degradation of phenolic pollutant
Recent Advances in Functional Bacterial Cellulose for Wearable Physical Sensing Applications
Eco-friendly sorbent of bacterial cellulose/metal–organic framework composite membrane for effective bisphenol a removal
A stretchable electrode for single enzymatic biofuel cells
Encapsulating enzyme into metal-organic framework during in-situ growth on cellulose acetate nanofibers as self-powered glucose biosensor
Multifunctional Wearable Strain Sensor Made with an Elastic Interwoven Fabric for Patients with Motor Dysfunction
Fibrous Network of C@MoS<sub>2</sub> Nanocapsule‐Decorated Cotton Linters Interconnected by Bacterial Cellulose for Lithium‐ and Sodium‐Ion Batteries
Warm-toned SiO2/red-emitting color converter@SrAl2O4:Eu2+, Dy3+ luminous fibers with variable and color-tuned luminescence on the basis of radiative energy transfer and color conversion
MoS2 nanograins doped TiO2 nanofibers as intensified anodes for lithium ion batteries
Wintersweet Branch‐Like C/C@SnO<sub>2</sub>/MoS<sub>2</sub> Nanofibers as High‐Performance Li and Na‐Ion Battery Anodes
Effect of pore distribution on the lithium storage properties of porous C/SnO 2 nanofibers
Preparation of a cellulose acetate/organic montmorillonite composite porous ultrafine fiber membrane for enzyme immobilization
Corrigendum to: “The enhanced gas-sensing and photocatalytic performance of hollow and hollow core–shell SnO2-based nanofibers induced by the Kirkendall effect” [Ceram. Int. 42 (2016) 1817–1826]
The enhanced gas-sensing and photocatalytic performance of hollow and hollow core–shell SnO2-based nanofibers induced by the Kirkendall effect
Comparison of Insecticide Susceptibilities of Empoasca vitis (Hemiptera: Cicadellidae) from Three Main Tea-Growing Regions in China