Stretchable and Heat‐Resistant Protein‐Based Electronic Skin for Human Thermoregulation
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Summary
Heating and temperature distribution detection are realized by array‐type PBES, contributing to potential applications in dredging of the blood vessel for alleviating arthritis and the integrated protein‐based electronic skin (PBES) exhibits high thermal stability and temperature sensitivity.
- Type
- article
- Published
- 2020-03-01
- Cited by
- 139
- References
- 30
- OpenAlex
- https://openalex.org/W3006543859
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:214023864
Keywords
Fibroin, Materials science, SILK, Biocompatibility, Composite material
References
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Cited by
- Naturally-Derived Wearable Strain Sensors with Enhanced Mechanical Properties and High Sensitivity.
- Surface Modification of Bombyx mori Silk Fibroin Film via Thiol-ene Click Chemistry
- Integrated multifunctional flexible electronics based on tough supramolecular hydrogels with patterned silver nanowires
- Bio‐Derived Natural Materials Based Triboelectric Devices for Self‐Powered Ubiquitous Wearable and Implantable Intelligent Devices
- Flexible and Stretchable Fiber‐Shaped Triboelectric Nanogenerators for Biomechanical Monitoring and Human‐Interactive Sensing
- Thermal management of wearable and implantable electronic healthcare devices: Perspective and measurement approach
- Electronic Skin from High-Throughput Fabrication of Intrinsically Stretchable Lead Zirconate Titanate Elastomer
- Silk Nanococoons: Bio‐Nanoreactors for Enzymatic Catalytic Reactions and Applications to Alcohol Intoxication
- Mesoscopic reconstruction of protein-based flexible materials and their optoelectronic devices
- Recent advances in printed flexible heaters for portable and wearable thermal management.
- Three-dimensional Printed Ultrahighly Sensitive Bioinspired Ionic Skin Based on Submicrometer-Scale Structures by Polymerization Shrinkage
- Research review about the progress of transient electronics in sensor and electronic skin
- Functional textiles and composite based wearable thermal devices for Joule heating: progress and perspectives
- Ultrahigh sensitivity and wide strain range of porous pressure sensor based on binary conductive fillers by in-situ polymerization
- New Silk Road: From Mesoscopic Reconstruction/Functionalization to Flexible Meso‐Electronics/Photonics Based on Cocoon Silk Materials
- Liquid‐Metal‐Based Dynamic Thermoregulating and Self‐Powered Electronic Skin
- Recent progress in silk fibroin-based flexible electronics
- Wearable hydration and pH sensor based on protein film for healthcare monitoring
- A highly stretchable and anti-freezing silk-based conductive hydrogel for application as a self-adhesive and transparent ionotronic skin
- Versatile sensing devices for self-driven designated therapy based on robust breathable composite films
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