Soft and stretchable electronic devices are important in wearable and implantable applications because of the high skin conformability. Due to the natural biocompatibility and biodegradability, silk protein is one of the ideal platforms for wearable electronic devices. However, the realization of skin-conformable electronic devices based on silk has been limited by the mechanical mismatch with skin, and the difficulty in integrating stretchable electronics. Here, silk protein is used as the substrate for soft and stretchable on-skin electronics. The original high Young's modulus (5-12 GPa) and low stretchability ( 400%, respectively. This plasticization is realized by the addition of CaCl2 and ambient hydration, whose mechanism is further i...
© 2021 by Annual Reviews. All rights reserved.High-performance wearable and implantable devices capa...
Proteins present an ecofriendly alternative to many of the synthetic components currently used in el...
Many existing and envisioned classes of implantable biomedical devices require high performance elec...
Soft and stretchable electronic devices are important in wearable and implantable applications becau...
Silk fibroin is a type of biomaterials which attracted a lot of research efforts due to its nature b...
Human skin provides an interface that transduces external stimuli into electrical signals for commun...
The human skin is an essential organ of the human body for sensing various changes in the external e...
Noninvasive and seamless interfacing between the sensors and human skin is highly desired for wearab...
With the rapid development of the Internet of Things (IoT) and the emergence of 5G, traditional sili...
Electronics that are capable of intimate, non-invasive integration with the soft, curvilinear surfac...
Advances in the biomedical field require functional materials and processes that can lead to devices...
Transparent electrodes that form seamless contact and enable optical interrogation at the electrode-...
Biocompatible actuators are widely desired for a variety of biomedical devices such as micromanipula...
The biocompatibility of conducting polymers (CPs) makes them promising for a variety of biomedical a...
Wearable technology has attracted significant public attention and has generated huge societal and e...
© 2021 by Annual Reviews. All rights reserved.High-performance wearable and implantable devices capa...
Proteins present an ecofriendly alternative to many of the synthetic components currently used in el...
Many existing and envisioned classes of implantable biomedical devices require high performance elec...
Soft and stretchable electronic devices are important in wearable and implantable applications becau...
Silk fibroin is a type of biomaterials which attracted a lot of research efforts due to its nature b...
Human skin provides an interface that transduces external stimuli into electrical signals for commun...
The human skin is an essential organ of the human body for sensing various changes in the external e...
Noninvasive and seamless interfacing between the sensors and human skin is highly desired for wearab...
With the rapid development of the Internet of Things (IoT) and the emergence of 5G, traditional sili...
Electronics that are capable of intimate, non-invasive integration with the soft, curvilinear surfac...
Advances in the biomedical field require functional materials and processes that can lead to devices...
Transparent electrodes that form seamless contact and enable optical interrogation at the electrode-...
Biocompatible actuators are widely desired for a variety of biomedical devices such as micromanipula...
The biocompatibility of conducting polymers (CPs) makes them promising for a variety of biomedical a...
Wearable technology has attracted significant public attention and has generated huge societal and e...
© 2021 by Annual Reviews. All rights reserved.High-performance wearable and implantable devices capa...
Proteins present an ecofriendly alternative to many of the synthetic components currently used in el...
Many existing and envisioned classes of implantable biomedical devices require high performance elec...