Area of research
Materials Chemistry · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Colloid, Nanotechnology, Materials science, Chemistry, Chemical physics, and Colloidal particle.
Soft matter roadmap<sup>*</sup>
A unified state diagram for the yielding transition of soft colloids
Comprehensive view of microscopic interactions between DNA-coated colloids
Patchy Colloidal Clusters with Broken Symmetry
Colloidal Particles with Triangular Patches
Large-scale synthesis of colloidal bowl-shaped particles
Tunable assembly of hybrid colloids induced by regioselective depletion
Hyperuniform Structures Formed by Shearing Colloidal Suspensions
Photo-printing of faceted DNA patchy particles
Reconfigurable Self-Assembly and Kinetic Control of Multiprogrammed DNA-Coated Particles
Reconfigurable Transitions between One- and Two-Dimensional Structures with Bifunctional DNA-Coated Janus Colloids
Two‐Dimensional (2D) or Quasi‐2D Superstructures from DNA‐Coated Colloidal Particles
Colloidal fibers and rings by cooperative assembly
Assembly of clathrates from tetrahedral patchy colloids with narrow patches
Pyrochlore lattice, self-assembly and photonic band gap optimizations
Colloidal alloys with preassembled clusters and spheres
Shape‐Shifting Patchy Particles
Shape‐Shifting Patchy Particles
Thermal Regulation of Colloidal Materials Architecture through Orthogonal Functionalizable Patchy Particles
Crystallization of DNA-coated colloids
Shape-sensitive crystallization in colloidal superball fluids
Synthetic Strategies Toward DNA-Coated Colloids that Crystallize
High-Density PEO-<i>b</i>-DNA Brushes on Polymer Particles for Colloidal Superstructures
Patchy Particle Packing under Electric Fields
Binding kinetics of lock and key colloids
A microscopic view of the yielding transition in concentrated emulsions
Two-Minute Assembly of Pristine Large-Area Graphene Based Films
Digital colloids: reconfigurable clusters as high information density elements