This work demonstrates the use of surface acoustic wave (SAW) atomization together with a nonuniform evaporation and nucleation process to give sub-50-nm diameter monodisperse nanoparticles. SAW atomization is a straightforward and energy efficient technique to generate relatively homogeneous particle size distributions that can be carried out on a chip-scale microdevice for portable drug delivery applications or scaled up for industrial production. It employs technology originally developed for the entirely different purpose of signal filtering and multiplexing, and provides direct control over the size of the particles through adjustment of the operating frequency of the ultrasonic vibration
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
We demonstrate the operation of a device that can produce chitosan nanoparticles in a tunable size r...
Recent developments in the miniature chip-based microfludic nebulization platform utilizing surface ...
Nanoparticles have been proved to be essentially important for efficient drug deliveries, and the dr...
We describe the fabrication of a surface acoustic wave (SAW) atomizer, and show its ability to gener...
We present a straightforward and rapid surface acoustic wave (SAW) atomization-based technique for e...
We present a straightforward and rapid surface acoustic wave (SAW) atomization-based technique for e...
Surface acoustic wave (SAW) atomization has been found to be a rapid and efficient way for generatin...
Multiple layer nanoparticles offers a likelihood of success in drug delivery, as it provides a solut...
Multiple layer nanoparticles offers a likelihood of success in drug delivery, as it provides a solut...
We demonstrate a straightforward and rapid atomization process driven by surface acoustic waves that...
Surface acoustic wave (SAW) atomization is attractive for generating micron or submicron aerosols in...
Simple and reliable formation of biodegradable nanoparticles formed from poly-epsilon-caprolactone w...
A rapid particle concentration method in a sessile droplet has been developed using asymmetric surfa...
Ultrafast particle and cell concentration is essential to the success of subsequent analytical proce...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
We demonstrate the operation of a device that can produce chitosan nanoparticles in a tunable size r...
Recent developments in the miniature chip-based microfludic nebulization platform utilizing surface ...
Nanoparticles have been proved to be essentially important for efficient drug deliveries, and the dr...
We describe the fabrication of a surface acoustic wave (SAW) atomizer, and show its ability to gener...
We present a straightforward and rapid surface acoustic wave (SAW) atomization-based technique for e...
We present a straightforward and rapid surface acoustic wave (SAW) atomization-based technique for e...
Surface acoustic wave (SAW) atomization has been found to be a rapid and efficient way for generatin...
Multiple layer nanoparticles offers a likelihood of success in drug delivery, as it provides a solut...
Multiple layer nanoparticles offers a likelihood of success in drug delivery, as it provides a solut...
We demonstrate a straightforward and rapid atomization process driven by surface acoustic waves that...
Surface acoustic wave (SAW) atomization is attractive for generating micron or submicron aerosols in...
Simple and reliable formation of biodegradable nanoparticles formed from poly-epsilon-caprolactone w...
A rapid particle concentration method in a sessile droplet has been developed using asymmetric surfa...
Ultrafast particle and cell concentration is essential to the success of subsequent analytical proce...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
We demonstrate the operation of a device that can produce chitosan nanoparticles in a tunable size r...
Recent developments in the miniature chip-based microfludic nebulization platform utilizing surface ...