Metallic muscles made of nanoporous metals suffer from serious drawbacks caused by the usage of an aqueous electrolyte for actuation. An aqueous electrolyte prohibits metallic muscles from operating in dry environments and hampers a high actuation rate due to the low ionic conductivity of electrolytes. In addition, redox reactions involved in electrochemical actuation severely coarsen the ligaments of nanoporous metals, leading to a substantial loss in performance of the actuator. Here we present an electrolyte-free approach to put metallic muscles to work via a metal/polymer interface. A nanocoating of polyaniline doped with sulfuric acid was grown onto the ligaments of nanoporous gold. Dopant sulfate anions coadsorbed into the polymer coa...
A polymer-based nanofiber composite actuator designed for linear actuation was fabricated by electro...
Artificial muscle fiber mimicking myofibril is fabricated using electrospun nanofibers of high stren...
In this paper, we propose a novel and facile methodology to chemically construct a thin and highly c...
Metallic muscles made of nanoporous metals suffer from serious drawbacks caused by the usage of an a...
Metallic muscles made of nanoporous metals suffer from serious drawbacks caused by the usage of an a...
etallic muscles1,2 made of nano-porous metals with high surface area-to-volume ratios offer a unique...
This work shows that a nano-coating of electrochromic polymer grown onto the ligaments of nanoporous...
In this contribution for the Golden Jubilee issue commemorating the 50th anniversary of the Journal ...
Electrochemical actuation in nanoporous metals is achieved by impregnation of the material’s pore sp...
Nanoporous metallic actuators for artificial muscle applications are distinguished by combining the ...
In this contribution for the Golden Jubilee issue commemorating the 50th anniversary of the Journal ...
We discuss actuation with a hybrid nanomaterial that is made by electro-polymerizing pyrrole on the ...
Artificial muscles possess a vast potential in accelerating the development of robotics, exoskeleton...
Artificial muscles possess a vast potential in accelerating the development of robotics, exoskeleton...
Kunstspieren veranderen van afmeting onder invloed van externe stimuli, zoals een elektrisch spannin...
A polymer-based nanofiber composite actuator designed for linear actuation was fabricated by electro...
Artificial muscle fiber mimicking myofibril is fabricated using electrospun nanofibers of high stren...
In this paper, we propose a novel and facile methodology to chemically construct a thin and highly c...
Metallic muscles made of nanoporous metals suffer from serious drawbacks caused by the usage of an a...
Metallic muscles made of nanoporous metals suffer from serious drawbacks caused by the usage of an a...
etallic muscles1,2 made of nano-porous metals with high surface area-to-volume ratios offer a unique...
This work shows that a nano-coating of electrochromic polymer grown onto the ligaments of nanoporous...
In this contribution for the Golden Jubilee issue commemorating the 50th anniversary of the Journal ...
Electrochemical actuation in nanoporous metals is achieved by impregnation of the material’s pore sp...
Nanoporous metallic actuators for artificial muscle applications are distinguished by combining the ...
In this contribution for the Golden Jubilee issue commemorating the 50th anniversary of the Journal ...
We discuss actuation with a hybrid nanomaterial that is made by electro-polymerizing pyrrole on the ...
Artificial muscles possess a vast potential in accelerating the development of robotics, exoskeleton...
Artificial muscles possess a vast potential in accelerating the development of robotics, exoskeleton...
Kunstspieren veranderen van afmeting onder invloed van externe stimuli, zoals een elektrisch spannin...
A polymer-based nanofiber composite actuator designed for linear actuation was fabricated by electro...
Artificial muscle fiber mimicking myofibril is fabricated using electrospun nanofibers of high stren...
In this paper, we propose a novel and facile methodology to chemically construct a thin and highly c...