The kinetic body motions have guided the core-shell fabrics of wearable bioelectronics to be elastoplastic. However, the polymeric electrodes follow the trade-off relationship between toughness and stretchability. To this end, the stress dissipation encoded silk fibroin electrode is proposed as the core electrode of wearable bioelectronics. Significantly, the high degree of intrinsic stress dissipation is realized via an amino acid crosslink. The canonical phenolic amino acid (i.e., tyrosine) of silk fibroin is engineered to bridge the secondary structures. A sufficient crosslink network is constructed when tyrosine is exposed near the amorphous strand. The stress dissipative tyrosine crosslink affords 12.5-fold increments of toughness (4.7...
Derived from Bombyx mori cocoons, regenerated silk fibroin (RSF) exhibits excellent biocompatibility...
Both sophisticated electronic systems and human biological systems rely on signal transduction and t...
In order to produce conductive, biocompatible and mechanically robust materials for use in bioelectr...
Silk fibroin is a type of biomaterials which attracted a lot of research efforts due to its nature b...
Soft and stretchable electronic devices are important in wearable and implantable applications becau...
With the rapid development of the Internet of Things (IoT) and the emergence of 5G, traditional sili...
Conducting polymers (CPs) such as poly(pyrrole) and poly(3,4-ethylenedioxythiophene) show great prom...
Non-invasive on-skin electrodes record the electrical potential changes from human skin, which refle...
Electrode materials for recording biomedical signals, such as electrocardiography (ECG), electroence...
Today's electronic devices are fabricated using highly toxic materials and processes which limits th...
Today's electronic devices are fabricated using highly toxic materials and processes which limi...
Electronics that are capable of intimate, non-invasive integration with the soft, curvilinear surfac...
The biocompatibility of conducting polymers (CPs) makes them promising for a variety of biomedical a...
Skeletal muscle tissue engineering (SMTE) employs designed biomaterial scaffolds for promoting myoge...
Silk fibroin (SF) is a sustainable material explored with success in the textile and biomedical indu...
Derived from Bombyx mori cocoons, regenerated silk fibroin (RSF) exhibits excellent biocompatibility...
Both sophisticated electronic systems and human biological systems rely on signal transduction and t...
In order to produce conductive, biocompatible and mechanically robust materials for use in bioelectr...
Silk fibroin is a type of biomaterials which attracted a lot of research efforts due to its nature b...
Soft and stretchable electronic devices are important in wearable and implantable applications becau...
With the rapid development of the Internet of Things (IoT) and the emergence of 5G, traditional sili...
Conducting polymers (CPs) such as poly(pyrrole) and poly(3,4-ethylenedioxythiophene) show great prom...
Non-invasive on-skin electrodes record the electrical potential changes from human skin, which refle...
Electrode materials for recording biomedical signals, such as electrocardiography (ECG), electroence...
Today's electronic devices are fabricated using highly toxic materials and processes which limits th...
Today's electronic devices are fabricated using highly toxic materials and processes which limi...
Electronics that are capable of intimate, non-invasive integration with the soft, curvilinear surfac...
The biocompatibility of conducting polymers (CPs) makes them promising for a variety of biomedical a...
Skeletal muscle tissue engineering (SMTE) employs designed biomaterial scaffolds for promoting myoge...
Silk fibroin (SF) is a sustainable material explored with success in the textile and biomedical indu...
Derived from Bombyx mori cocoons, regenerated silk fibroin (RSF) exhibits excellent biocompatibility...
Both sophisticated electronic systems and human biological systems rely on signal transduction and t...
In order to produce conductive, biocompatible and mechanically robust materials for use in bioelectr...