Mimicking Human and Biological Skins for Multifunctional Skin Electronics
Explore this paper's citation graph
Summary
Diverse functionalities in user‐interactive, skin‐attachable, and ultrasensitive e‐skins are introduced with the inspiration from unique architectures and functionalities, in biological skins of natural creatures.
- Type
- article
- Published
- 2019-08-13
- Cited by
- 402
- References
- 253
- OpenAlex
- https://openalex.org/W2967087778
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:202067382
Keywords
Camouflage, Wearable computer, Biomimetics, Nanotechnology, Creatures
References
- Fingertip skin–inspired microstructured ferroelectric skins discriminate static/dynamic pressure and temperature stimuli
- Human Hand Function
- Perylene as an electron-rich moiety in healable, complementary π–π stacked, supramolecular polymer systems
- Providing a Sense of Touch to Prosthetic Hands
- Tattoolike Polyaniline Microparticle-Doped Gold Nanowire Patches as Highly Durable Wearable Sensors.
- A chameleon-inspired stretchable electronic skin with interactive colour changing controlled by tactile sensing
- Comparative morphology of changeable skin papillae in octopus and cuttlefish
- Adhesive force of a single gecko foot-hair
- Recent Progress in Electronic Skin
- Cephalopod‐Inspired Miniaturized Suction Cups for Smart Medical Skin
- A highly sensitive pressure sensor using a double-layered graphene structure for tactile sensing.
- Tactual perception: a review of experimental variables and procedures
- Highly sensitive electronic whiskers based on patterned carbon nanotube and silver nanoparticle composite films
- Ultrathin, highly flexible and stretchable PLEDs
- Color Manipulation of Mechanoluminescence from Stress‐Activated Composite Films
- Force-induced activation of covalent bonds in mechanoresponsive polymeric materials
- Stretchable active-matrix organic light-emitting diode display using printable elastic conductors.
- Surface chemistry controlled superhydrophobic stability of W18O49 nanowire arrays submerged underwater
- Flexible and Controllable Piezo‐Phototronic Pressure Mapping Sensor Matrix by ZnO NW/p‐Polymer LED Array
- The estimation of two collagens from human dermis by interrupted gel electrophoresis.
Cited by
- Electronic Skin for Closed-Loop Systems.
- Biomimetics for high-performance flexible tactile sensors and advanced artificial sensory systems
- Breathable and Flexible Polymer Membranes with Mechanoresponsive Electric Resistance
- Transfer Printing of Electronic Functions on Arbitrary Complex Surfaces.
- Recent advances of wearable and flexible piezoresistivity pressure sensor devices and its future prospects
- Biomimetic Tactile Sensors Based on Nanomaterials.
- Bioinspired Prosthetic Interfaces
- Stretchable and Heat‐Resistant Protein‐Based Electronic Skin for Human Thermoregulation
- An artificial piezotronic synapse for tactile perception
- Mussel‐Inspired Hydrogels for Self‐Adhesive Bioelectronics
- A programmable, gradient-composition strategy producing synergistic and ultrahigh sensitivity amplification for flexible pressure sensing
- Flexible Liquid‐Filled Fiber Adapter Enabled Wearable Optical Sensors
- Seedless Hydrothermal Growth of ZnO Nanorods as a Promising Route for Flexible Tactile Sensors
- Multiple Stimuli Responsive and Identifiable Zwitterionic Ionic Conductive Hydrogel for Bionic Electronic Skin
- Brain-like spatiotemporal information processing with nanosized second-order synaptic emulators; “solid-state memory visualizer”
- A breathable, biodegradable, antibacterial, and self-powered electronic skin based on all-nanofiber triboelectric nanogenerators
- Highly Stretchable, Elastic, and Sensitive MXene-Based Hydrogel for Flexible Strain and Pressure Sensors
- Recent Advances in Flexible Field‐Effect Transistors toward Wearable Sensors
- Unconventional Device and Material Approaches for Monolithic Biointegration of Implantable Sensors and Wearable Electronics
- Transduction Mechanisms, Micro-Structuring Techniques, and Applications of Electronic Skin Pressure Sensors: A Review of Recent Advances
Related papers
- Design, Fabrication and Characterisation of Multi-Parameter Optical Sensors Dedicated to E-Skin Applications
- GPS-Inspired Stretchable Self-Powered Electronic Skin
- Plasticizing Silk Protein for On‐Skin Stretchable Electrodes
- Stretchable electronics towards the fabrication of organic sensors for artificial skin
- Materials and Design Strategies of Stretchable Electrodes for Electronic Skin and its Applications
- Crocodile-Skin-Inspired Omnidirectionally Stretchable Pressure Sensor.
- Stretchable and self-healing polymers and devices for electronic skin
- Recent Progress on Stretchable Electronic Devices with Intrinsically Stretchable Components
- Stretchable, Twisted Conductive Microtubules for Wearable Computing, Robotics, Electronics, and Healthcare
- Fully rubbery stretchable electronics, sensors, and smart skins