There has been considerable interest in the noninvasive manipulation of particles in dispersions during the last 15 years. The manipulation techniques based on acoustic radiation forces are particularly interesting as they allow for the manipulation of particles based on their density, compressibility and/or size. The majority of the acoustic research has been focused on particles above a few μm. In the current work we investigate the manipulation of particles in the range of 100 nm to 10 μm using ultrasonic standing waves. The setup consisted of a small rectangular cell. Within the cell, two sides of piezo material were meticulously aligned (square: 30 × 30 mm2, center frequency 2 MHz). The distance between the piezo slabs was 9 mm. One pi...
Improving dispersion stability of nanofluids through ultrasonication has been shown to be effective....
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
The use of ultrasound for trapping and patterning particles or cells in microfluidic systems is usua...
Improving dispersion stability of nanofluids through ultrasonication has been shown to be effective....
Improving dispersion stability of nanofluids through ultrasonication has been shown to be effective....
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
The use of ultrasound for trapping and patterning particles or cells in microfluidic systems is usua...
Improving dispersion stability of nanofluids through ultrasonication has been shown to be effective....
Improving dispersion stability of nanofluids through ultrasonication has been shown to be effective....
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...
Both in design and production of nanoparticles and nanocomposites it is of vital importance to have ...