Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating Skin

Por um escritor misterioso
Last updated 16 novembro 2024
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Silk chemistry and biomedical material designs
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating Skin
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Silk fibroins in multiscale dimensions for diverse applications - RSC Advances (RSC Publishing) DOI:10.1039/D0RA03964K
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Silk chemistry and biomedical material designs
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Frontiers Engineering Natural and Recombinant Silks for Sustainable Biodevices
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Silk Fibroin-Based Wearable All-Fiber Multifunctional Sensor for Smart Clothing
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Recent advances in flexible noninvasive electrodes for surface electromyography acquisition
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Design of Self-Healing and Electrically Conductive Silk Fibroin-Based Hydrogels
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Silk-based bioinspired structural and functional materials - ScienceDirect
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Nanomaterials, Free Full-Text
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Effects of a plasma jet on electrochemical properties of silk fibroin hydrogel doped with graphene oxide - Jian Zhou, Fu Lu, Zhengwei Wu, 2022
Multifunctional Biosensors Made with Self-Healable Silk Fibroin Imitating  Skin
Graphene and silk combine to make self-healable, multifunctional electronic tattoos

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