Area of research
Materials Chemistry · Condensed Matter Physics
Research interest
Research interests include Micro and Nano Robotics, Material Dynamics and Properties, Pickering emulsions and particle stabilization, and RNA Interference and Gene Delivery.
Optimal noise for vortex of self-propelled particles around an obstacle.
Gear rotation caused by self-propelling eccentric particles
Activity waves in condensed excitable phases of Quincke rollers.
Brønsted acid enabled metal-free remote oxygenation and amidation of unstrained C–C bonds <i>via</i> 1,4-heteroaryl migration chaperoned radical-polar crossover
Pre-vascularized hydrogel co-encapsulating SHEDs and HUVECs for dental pulp regeneration
Inertia effects in the spatial distribution and dynamics of active particles with space-dependent activity.
Investigation of the adsorption behavior and adsorption mechanism of pollutants onto electron beam-aged microplastics
Constrained motion of self-propelling eccentric disks linked by a spring.
Deformation-induced phase separation of active vesicles.
Escape of an active ring from an attractive surface: Behaving like a self-propelled Brownian particle.
Configuration and dynamics of a self-propelled diblock copolymer chain.
Controllable In Situ Transformation of Layered Double Hydroxides into Ultrathin Metal–Organic Framework Nanosheet Arrays for Energy Storage
Controllable Transformation of Metal–Organic Framework Nanosheets into Oxygen Vacancy Ni<sub><i>x</i></sub>Co<sub>3–<i>x</i></sub>O<sub>4</sub> Arrays for Ultrahigh-Capacitance Supercapacitors with Long Lifespan
Obstacle-induced giant jammed aggregation of active semiflexible filaments.
Structure and dynamics of an active polymer adsorbed on the surface of a cylinder.
Well-defined hollow tube@sheets NiCo<sub>2</sub>S<sub>4</sub> core–shell nanoarrays for ultrahigh capacitance supercapacitor
Absorption of self-propelled particles into a dense porous medium.
ORAI1 and ORAI2 modulate murine neutrophil calcium signaling, cellular activation, and host defense
Vortex formation of spherical self-propelled particles around a circular obstacle.
Transport of self-propelled particles across a porous medium: trapping, clogging, and the Matthew effect.
Large-scale generation of functional mRNA-encapsulating exosomes via cellular nanoporation
Shape transformation and manipulation of a vesicle by active particles.
Globule-stretch transition of a self-attracting chain in the repulsive active particle bath.
Assembly structures and dynamics of active colloidal cells.
Unfolding of a diblock chain and its anomalous diffusion induced by active particles.
RGD Peptide‐Based Target Drug Delivery of Doxorubicin Nanomedicine
The theory of dielectrophoresis and its applications on medical and materials research
Osteoblast-Targeting-Peptide Modified Nanoparticle for siRNA/microRNA Delivery
Delivery of Antipsychotics with Nanoparticles
Pegylated Drug Delivery Systems: From Design to Biomedical Applications