Artificial muscles, or soft actuators, that could exhibit contractile stroke and operate in open-air, would be crucial for many applications, such as robotics, prosthetics, or powered exoskeletons. Amongst the different artificial muscle technologies, electrochemical carbon nanotube (CNT) yarn muscles, transducing capacitively ionic accumulation at the electrochemical double layer into linear contraction, are amongst the most promising candidates. However, their performances are either limited by an undesired bipolar behaviour or short lifetime due to the inevitable drying of water-based electrolytes. In this paper, we present here the fabrication of air -operating contractile linear artificial muscles from commercially available CNT yarns ...
The first demonstration of electromechanical actuation in carbon nanotubes (CNTs), aligned in the fo...
The first demonstration of electromechanical actuation in carbon nanotubes (CNTs), aligned in the fo...
Present artificial muscles have been suffering from poor actuation step precision and the need of en...
Artificial muscles, or soft actuators, that could exhibit contractile stroke and operate in open-air...
Artificial muscles, or soft actuators, that could exhibit contractile stroke and operate in open-air...
Electrochemically powered carbon nanotube (CNT) yarn muscles are of increasing interest because of t...
Twisted-yarn-based artificial muscles can potentially be used in diverse applications, such as valve...
Electrochemically or electrothermally driven twisted/coiled carbon nanotube (CNT) yarn actuators are...
Electrochemically or electrothermally driven twisted/coiled carbon nanotube (CNT) yarn actuators are...
Artificial muscles are of practical interest, but few types have been commercially exploited. Typica...
Artificial muscles are of practical interest, but few types have been commercially exploited. Typica...
We report electrochemically powered, all-solid-state torsional and tensile artificial yarn muscles u...
Artificial muscles are of practical interest, but few types have been commercially exploited. Typica...
Rotary motors of conventional design can be rather complex and are therefore difficult to miniaturiz...
Rotary motors of conventional design can be rather complex and are therefore difficult to miniaturiz...
The first demonstration of electromechanical actuation in carbon nanotubes (CNTs), aligned in the fo...
The first demonstration of electromechanical actuation in carbon nanotubes (CNTs), aligned in the fo...
Present artificial muscles have been suffering from poor actuation step precision and the need of en...
Artificial muscles, or soft actuators, that could exhibit contractile stroke and operate in open-air...
Artificial muscles, or soft actuators, that could exhibit contractile stroke and operate in open-air...
Electrochemically powered carbon nanotube (CNT) yarn muscles are of increasing interest because of t...
Twisted-yarn-based artificial muscles can potentially be used in diverse applications, such as valve...
Electrochemically or electrothermally driven twisted/coiled carbon nanotube (CNT) yarn actuators are...
Electrochemically or electrothermally driven twisted/coiled carbon nanotube (CNT) yarn actuators are...
Artificial muscles are of practical interest, but few types have been commercially exploited. Typica...
Artificial muscles are of practical interest, but few types have been commercially exploited. Typica...
We report electrochemically powered, all-solid-state torsional and tensile artificial yarn muscles u...
Artificial muscles are of practical interest, but few types have been commercially exploited. Typica...
Rotary motors of conventional design can be rather complex and are therefore difficult to miniaturiz...
Rotary motors of conventional design can be rather complex and are therefore difficult to miniaturiz...
The first demonstration of electromechanical actuation in carbon nanotubes (CNTs), aligned in the fo...
The first demonstration of electromechanical actuation in carbon nanotubes (CNTs), aligned in the fo...
Present artificial muscles have been suffering from poor actuation step precision and the need of en...