Area of research
Cellular and Molecular Neuroscience · Biomedical Engineering
Research interest
Research interests include Advanced Sensor and Energy Harvesting Materials, Neuroscience and Neural Engineering, Conducting polymers and applications, and Photoreceptor and optogenetics research.
High-density soft bioelectronic fibres for multimodal sensing and stimulation
Continuous and componentized facial palsy measurement alignment and clinical interpretable model
Periplasmic biomineralization for semi-artificial photosynthesis
Nanowired human cardiac organoid transplantation enables highly efficient and effective recovery of infarcted hearts
Genetically targeted chemical assembly
Topological supramolecular network enabled high-conductivity, stretchable organic bioelectronics
Wireless, closed-loop, smart bandage with integrated sensors and stimulators for advanced wound care and accelerated healing
Strain-insensitive intrinsically stretchable transistors and circuits
Genetically targeted chemical assembly of functional materials in living cells, tissues, and animals
Micelle-enabled self-assembly of porous and monolithic carbon membranes for bioelectronic interfaces
Laser writing of nitrogen-doped silicon carbide for biological modulation
Dynamic and Programmable Cellular-Scale Granules Enable Tissue-like Materials
Structured silicon for revealing transient and integrated signal transductions in microbial systems
Decoupling of mechanical properties and ionic conductivity in supramolecular lithium ion conductors
Nongenetic optical neuromodulation with silicon-based materials
Rational design of silicon structures for optically controlled multiscale biointerfaces
Photoelectrochemical modulation of neuronal activity with free-standing coaxial silicon nanowires
Inorganic semiconductor biointerfaces
Texturing Silicon Nanowires for Highly Localized Optical Modulation of Cellular Dynamics
Roadmap on semiconductor–cell biointerfaces
Alloy-assisted deposition of three-dimensional arrays of atomic gold catalyst for crystal growth studies
Heterogeneous silicon mesostructures for lipid-supported bioelectric interfaces
Atomic gold–enabled three-dimensional lithography for silicon mesostructures