Area of research
Mechanics of Materials · Ocean Engineering
Research interest
Research interests include Materials science, Metamaterial, Actuator, Soft robotics, Computer science, and Buckling.
Squeaking at soft–rigid frictional interfaces
Shell buckling for programmable metafluids
3D spatiotemporally scalable in vivo neural probes based on fluorinated elastomers
Programming 3D Curves with Discretely Constrained Cylindrical Inflatables
Inverse Design of Mechanical Metamaterials with Target Nonlinear Response via a Neural Accelerated Evolution Strategy
Inflatable Origami: Multimodal Deformation via Multistability
Inverse Design of Inflatable Soft Membranes Through Machine Learning
Multistable inflatable origami structures at the metre scale
Microstructural design for mechanical–optical multifunctionality in the exoskeleton of the flower beetle <i>Torynorrhina flammea</i>
Mechanically robust lattices inspired by deep-sea glass sponges
Octopus Arm-Inspired Tapered Soft Actuators with Suckers for Improved Grasping
Guided transition waves in multistable mechanical metamaterials
Kirigami‐Inspired Inflatables with Programmable Shapes
Inflatable soft jumper inspired by shell snapping
Bioinspired kirigami metasurfaces as assistive shoe grips
Geometric charges and nonlinear elasticity of two-dimensional elastic metamaterials
Programming soft robots with flexible mechanical metamaterials
Reconfigurable soft body trajectories using unidirectionally stretchable composite laminae
Nonlinear transition waves in free-standing bistable chains
Kirigami skins make a simple soft actuator crawl
Metamaterials with amplitude gaps for elastic solitons
Effect of predeformation on the propagation of vector solitons in flexible mechanical metamaterials
Flexible mechanical metamaterials
Rational design of reconfigurable prismatic architected materials
Buckling-Induced Kirigami
Origami Metamaterials for Tunable Thermal Expansion
Exploiting Microstructural Instabilities in Solids and Structures: From Metamaterials to Structural Transitions
Elastic Vector Solitons in Soft Architected Materials
Motion microscopy for visualizing and quantifying small motions
Automatic design of fiber-reinforced soft actuators for trajectory matching