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- W4214807002 abstract "In the present work we show that the interaction between short lasers pulses and tailor-made nanostrucured materials can produce broadband high-frequency ultrasound. In order to obtain efficient light-to-pressure conversion we used nanostructured carbon nanotubes permeated with high thermal expansion polydimethylsiloxane and nanometric TiO<sub>2</sub> particles with adsorbed dye infused polystyrene. It is possible to achieve ultrasound pulses with central frequencies of 80 MHz and bandwidths of 125 MHz (at -6 dB) using a 6 ns pulsed laser. The aforementioned materials are used in order to establish proof-of-concept of the non-destructive ultrasound pulses interaction with biological membranes, exemplified by the unloading of Green Fluorescence Protein from giant unilamellar vesicles, and of non-invasive material inspection, illustrated with the measurement of the thickness of thin paint layers based on ultrasound frequency attenuation." @default.
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- W4214807002 date "2022-03-03" @default.
- W4214807002 modified "2023-09-29" @default.
- W4214807002 title "Generation and applications of broadband high-frequency laser ultrasound with nanostructured materials" @default.
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- W4214807002 doi "https://doi.org/10.1117/12.2609744" @default.
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