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Piezoelectric Peptide Nanotube Substrate Sensors Activated through Sound Wave Energy
Sawsan Almohammed1,2, Allan Finlay1, Dominik Duleba3
1School of Physics, University College Dublin, Belfield, Dublin 4 D04 V1W8, Ireland.
Abstract:
The use of sustainable and safe materials is increasingly in demand for the creation of photonic-based technology. Piezoelectric peptide nanotubes make up a class of safe and sustainable materials. We show that these materials can generate piezoelectric charge through the deformation of oriented molecular dipoles when the tube length is flexed through the application of sound energy. Through the combination of peptide nanotubes with plasmon active nanomaterials, harvesting of low-frequency acoustic sound waves was achieved. This effect was applied to boost surface-enhanced Raman scattering signal detection of analytes, including glucose. This work demonstrates the potential of utilizing sound to boost sensing by using piezoelectric materials.
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