Electronics is evolving from rigid, flexible to ultimate stretchable electronics, in which active optoelectronic materials are required to be deposited onto or embedded into elastomeric materials. We have recently demonstrated a powerful solution-based electroless gold coating technology, which enables the growth of enokitake-like gold nanowires on two-dimensional elastomeric sheets and one-dimensional fibers for a wide range of applications in wearable bioelectronics. Here, we show that such an elastomeric gold coating technology can be extended to three-dimensional (3D) elastomeric sponges. We have successfully grown vertically-aligned enokitake-like gold nanowires (v-AuNWs) uniformly throughout 3D sponge skeletons, leading to a highly co...
The ability of developing highly durable fiber-shaped electronic devices is crucial for next-generat...
Wearable and implantable devices require conductive, stretchable and biocompatible materials. Howeve...
Ultrathin gold nanowires (AuNWs) have shown great potential toward applications in flexible electron...
Stretchable electronics may enable electronic components to be part of our organs - ideal for future...
Stretchable fiber conductors are appealing in the field of soft electronics due to their potential t...
Wearable and highly flexible or stretchable electronics, including sensing devices, electrode compon...
Conventional electrodes produced from gold or glassy carbon are outstanding electrochemical platform...
Soft, flexible polymer-based bioelectronics are a promising approach to minimize the chronic inflamm...
Stretchable electronics may enable electronic components to be part of our organsideal for future w...
Foldable photoelectronics and muscle-like transducers require highly stretchable and trans-parent el...
Porous carbon nanotube networks represent a type of material that can achieve both structural robust...
Stretchable conductive nanocomposites have been intensively studied for wearable bioelectronics. How...
The thesis focuses on low-cost bottom-up approach to design nanostructured electrode materials for n...
A stretchable electrode is a crucial component in future elastronics (i.e. stretchable electronics) ...
Mechanically-gated ion channels play an important role in the human body, whereas it is challenging ...
The ability of developing highly durable fiber-shaped electronic devices is crucial for next-generat...
Wearable and implantable devices require conductive, stretchable and biocompatible materials. Howeve...
Ultrathin gold nanowires (AuNWs) have shown great potential toward applications in flexible electron...
Stretchable electronics may enable electronic components to be part of our organs - ideal for future...
Stretchable fiber conductors are appealing in the field of soft electronics due to their potential t...
Wearable and highly flexible or stretchable electronics, including sensing devices, electrode compon...
Conventional electrodes produced from gold or glassy carbon are outstanding electrochemical platform...
Soft, flexible polymer-based bioelectronics are a promising approach to minimize the chronic inflamm...
Stretchable electronics may enable electronic components to be part of our organsideal for future w...
Foldable photoelectronics and muscle-like transducers require highly stretchable and trans-parent el...
Porous carbon nanotube networks represent a type of material that can achieve both structural robust...
Stretchable conductive nanocomposites have been intensively studied for wearable bioelectronics. How...
The thesis focuses on low-cost bottom-up approach to design nanostructured electrode materials for n...
A stretchable electrode is a crucial component in future elastronics (i.e. stretchable electronics) ...
Mechanically-gated ion channels play an important role in the human body, whereas it is challenging ...
The ability of developing highly durable fiber-shaped electronic devices is crucial for next-generat...
Wearable and implantable devices require conductive, stretchable and biocompatible materials. Howeve...
Ultrathin gold nanowires (AuNWs) have shown great potential toward applications in flexible electron...