Research

Remote control of muscle driven miniature robots with battery-free wireless optoelectronics.
Science Robotics, 8(74):eadd1053, 2023. [pdf] [doi]

An advanced wireless haptic interface for high resolution, programmable patterns of touch across large areas of the skin.Nature Electronics, 5:374–385, 2022. [pdf] [doi]“A wirelessly programmable, skin-integrated thermo-haptic stimulator system for virtual reality.” PNAS, 121 (22):e2404007121, 2024. [pdf] [doi]“Skin-integrated systems for power efficient, programmable thermal sensations across large body areas.” PNAS, 120(6):e2217828120, 2023. [pdf] [doi]

Real-time control in wireless multilateral optogenetics for broad neuroscience applications.Nature Neuroscience, 24: 1035-1045, 2021. [pdf] [doi]“Preparation and use of wireless reprogrammable multilateral optogenetic devices for behavioral neuroscience.” Nature Protocols, 17:1073–1096, 2022. [pdf] [doi]“Real-time programmable gene delivery, optogenetics and photopharmacology enabled by wireless multi-lateral optofluidic microsystems.” Nature Communications, 13:5571, 2022. [pdf] [doi]“Remote optogenetic control of the enteric nervous system and brain-gut axis in freely-behaving mice enabled by a wireless, battery-free optoelectronic device.” Biosensors and Bioelectronics, 258:116298, 2024. [pdf] [doi]

DNA modified plasmonic sensor for the direct detection of virus biomarkers from the blood.Nano Letters, 21(18):7505–7511, 2021. [pdf] [doi]“Enzyme-Free Plasmonic Biosensor for Direct Detection of Neurotransmitter Dopamine from Whole Blood.Nano Letters, 19(1):449-454, 2019. [pdf] [doi]