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Thermal acoustofluidics: ultrasonic manipulation of nanoparticles with temperature gradient

Diarienummer
Koordinator Lunds universitet - Biomedicinsk teknik, avd f Biomedicinsk teknik
Bidrag från Vinnova 2 038 522 kronor
Projektets löptid maj 2020 - juli 2022
Status Avslutat

Viktiga resultat som projektet gav

We discovered the novel thermoacoustic streaming when the light-induced temperature gradients are created in a standing wave field. The underlying physics is well understood. It turns out to be difficult to achieve nanoparticle manipulation via thermoacoustic streaming. We therefore suppressed streaming using two miscible fluids and performed nanoparticle focusing using the device with an ideal vibration mode excited by the piezo actuation from the side. This new actuation method leads to a significant enhancement in acoustic energy density and hence improves the throughput.

Långsiktiga effekter som förväntas

The results obtained in this project are fruitful. The fundamental discovery regarding thermoacoustic streaming shows the potential to enable rapid spatiotemporal modulation of local streaming fields through fast reconfigurable optical fields. The enhancement of acoustic energy density in the microchannels of acoustofluidic devices using side actuation leads to high device performance, i.e., achieving high throughput under low input power. The result demonstrates a clear potential for acoustophoresis devices to better meet clinical standards.

Upplägg och genomförande

The plan for the first year was followed almost perfectly, that we discovered the novel thermoacoustic streaming and understood its underlying mechanisms. The original plan for the second year turned out to be very difficult to implement. Therefore, a backup plan was used for manipulating nanoparticles. The implementation of nanoparticle manipulation turns out to be successful using the backup plan. Besides, an unexpected result regarding the themoacoustic streaming induced by frictional heating was also obtained in the second year, which was not planned at the beginning.

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Senast uppdaterad 14 september 2022

Diarienummer 2019-04856