Nanoactuators and nanomachines have long been sought after, but key bottlenecks remain. Forces at submicrometer scales are weak and slow, control is hard to achieve, and power cannot be reliably supplied. Despite the increasing complexity of nanodevices such as DNA origami and molecular machines, rapid mechanical operations are not yet possible. Here, we bind temperature-responsive polymers to charged Au nanoparticles, storing elastic energy that can be rapidly released under light control for repeatable isotropic nanoactuation. Optically heating above a critical temperature Tc = 32 °C using plasmonic absorption of an incident laser causes the coatings to expel water and collapse within a microsecond to the nanoscale, millions of times fast...
Dynamic control of the spacing between Au nanoparticles using nano-architectures incorporating the t...
We investigated the optical and thermal actuation behavior of densely cross-linked photoresponsive p...
Manipulating and utilizing light in nanoscale are becoming tasks of not only scientific interest, bu...
Nanoactuators and nanomachines have long been sought after, but key bottlenecks remain. Forces at su...
The development of programmable nanomachines that deliver therapeutic drugs to specific target sites...
Thermo-responsive polymers can be used to rapidly actuate individual nanoparticles forming nano-mech...
Single-molecule force spectroscopy techniques are powerful tools for investigating the mechanical un...
Temperature changes in the vicinity of a single absorptive nanostructure caused by local heating hav...
Gold nanoparticles (AuNPs) incorporated into the stimuli-responsive polymeric matrix play an increas...
Arrangements of nanostructures in well-defined patterns are the basis of photonic crystals, metamate...
Nanoporous gold (NPG) promises efficient light-to-heat transformation, yet suffers limited photother...
Materials capable of actuation through remote stimuli are crucial for untethering soft robotic syste...
Colloidal metal nanocrystals exhibit distinct plasmonic resonances that can greatly enhance optical ...
Controlled manipulation of nanoscale objects in fluids is relevant to both fundamental studies and t...
Optofluidics: Light forces for controlling heat nanosources and fluid flows New opportunities for co...
Dynamic control of the spacing between Au nanoparticles using nano-architectures incorporating the t...
We investigated the optical and thermal actuation behavior of densely cross-linked photoresponsive p...
Manipulating and utilizing light in nanoscale are becoming tasks of not only scientific interest, bu...
Nanoactuators and nanomachines have long been sought after, but key bottlenecks remain. Forces at su...
The development of programmable nanomachines that deliver therapeutic drugs to specific target sites...
Thermo-responsive polymers can be used to rapidly actuate individual nanoparticles forming nano-mech...
Single-molecule force spectroscopy techniques are powerful tools for investigating the mechanical un...
Temperature changes in the vicinity of a single absorptive nanostructure caused by local heating hav...
Gold nanoparticles (AuNPs) incorporated into the stimuli-responsive polymeric matrix play an increas...
Arrangements of nanostructures in well-defined patterns are the basis of photonic crystals, metamate...
Nanoporous gold (NPG) promises efficient light-to-heat transformation, yet suffers limited photother...
Materials capable of actuation through remote stimuli are crucial for untethering soft robotic syste...
Colloidal metal nanocrystals exhibit distinct plasmonic resonances that can greatly enhance optical ...
Controlled manipulation of nanoscale objects in fluids is relevant to both fundamental studies and t...
Optofluidics: Light forces for controlling heat nanosources and fluid flows New opportunities for co...
Dynamic control of the spacing between Au nanoparticles using nano-architectures incorporating the t...
We investigated the optical and thermal actuation behavior of densely cross-linked photoresponsive p...
Manipulating and utilizing light in nanoscale are becoming tasks of not only scientific interest, bu...