The surface acoustic wave (SAW) is effective for the manipulation of fluids and particles at microscale. The current approach of integrating interdigitated transducers (IDTs) for SAW generation into microfluidic channels involves complex and laborious microfabrication steps. These steps often require full access to clean room facilities and hours to align the transducers to the precise location. This work presents an affordable and innovative method for fabricating SAW-based microfluidic devices without the need for clean room facilities and alignment. The IDTs and microfluidic channels are fabricated using the same process and thus are precisely self-aligned in accordance with the device design. With the use of the developed fabrication ap...
In recent years, surface acoustic wave (SAW) that were generated by interlocking patterns of the int...
Acoustofluidic techniques are increasingly used to manipulate nano- and micro-particles in microflui...
We demonstrated an enhanced particle focusing in microfluidic channels by using standing surface aco...
The surface acoustic wave (SAW) is effective for the manipulation of fluids and particles at microsc...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
In recent years, the high intensity surface acoustic wave (SAW) generated by interdigital tr...
Surface acoustic wave (SAW) devices have become popular as a practical and effective tool for fluid ...
Acoustic actuation of fluids at small scales may finally enable a comprehensive lab-on-a-chip revolu...
Acoustic actuation of fluids at small scales may finally enable a comprehensive lab-on-a-chip revolu...
Nanoparticles detection by sensors uses samples quantities in the order of 〖10〗^(-9)-〖10〗^(-18) L. ...
We present a numerical and experimental study of acoustophoretic manipulation in a microfluidic chan...
Microvesicles secreted from our cells referred to as exosomes contain vital information on our healt...
Surface acoustic wave (SAW)-based acoustofluidics shows broad applications in biomedicine and chemis...
Acoustofluidic devices based on surface acoustic waves (SAWs) have been widely applied in biomedical...
In recent years, surface acoustic wave (SAW) that were generated by interlocking patterns of the int...
Acoustofluidic techniques are increasingly used to manipulate nano- and micro-particles in microflui...
We demonstrated an enhanced particle focusing in microfluidic channels by using standing surface aco...
The surface acoustic wave (SAW) is effective for the manipulation of fluids and particles at microsc...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
In recent years, the high intensity surface acoustic wave (SAW) generated by interdigital tr...
Surface acoustic wave (SAW) devices have become popular as a practical and effective tool for fluid ...
Acoustic actuation of fluids at small scales may finally enable a comprehensive lab-on-a-chip revolu...
Acoustic actuation of fluids at small scales may finally enable a comprehensive lab-on-a-chip revolu...
Nanoparticles detection by sensors uses samples quantities in the order of 〖10〗^(-9)-〖10〗^(-18) L. ...
We present a numerical and experimental study of acoustophoretic manipulation in a microfluidic chan...
Microvesicles secreted from our cells referred to as exosomes contain vital information on our healt...
Surface acoustic wave (SAW)-based acoustofluidics shows broad applications in biomedicine and chemis...
Acoustofluidic devices based on surface acoustic waves (SAWs) have been widely applied in biomedical...
In recent years, surface acoustic wave (SAW) that were generated by interlocking patterns of the int...
Acoustofluidic techniques are increasingly used to manipulate nano- and micro-particles in microflui...
We demonstrated an enhanced particle focusing in microfluidic channels by using standing surface aco...