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SU-8 Guiding Layer for Love Wave Devices

SU-8 is a technologically important photoresist used extensively for the fabrication of microfluidics and MEMS, allowing high aspect ratio structures to be produced. In this work we report the use of SU-8 as a Love wave sensor guiding layer which allows the possibility of integrating a guiding layer...

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Autores principales: Roach, Paul, Atherton, Shaun, Doy, Nicola, McHale, Glen, Newton, Michael I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3965230/
https://www.ncbi.nlm.nih.gov/pubmed/28903244
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author Roach, Paul
Atherton, Shaun
Doy, Nicola
McHale, Glen
Newton, Michael I.
author_facet Roach, Paul
Atherton, Shaun
Doy, Nicola
McHale, Glen
Newton, Michael I.
author_sort Roach, Paul
collection PubMed
description SU-8 is a technologically important photoresist used extensively for the fabrication of microfluidics and MEMS, allowing high aspect ratio structures to be produced. In this work we report the use of SU-8 as a Love wave sensor guiding layer which allows the possibility of integrating a guiding layer with flow cell during fabrication. Devices were fabricated on ST-cut quartz substrates with a single-single finger design such that a surface skimming bulk wave (SSBW) at 97.4 MHz was excited. SU-8 polymer layers were successively built up by spin coating and spectra recorded at each stage; showing a frequency decrease with increasing guiding layer thickness. The insertion loss and frequency dependence as a function of guiding layer thickness was investigated over the first Love wave mode. Mass loading sensitivity of the resultant Love wave devices was investigated by deposition of multiple gold layers. Liquid sensing using these devices was also demonstrated; water-glycerol mixtures were used to demonstrate sensing of density-viscosity and the physical adsorption and removal of protein was also assessed using albumin and fibrinogen as model proteins.
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spelling pubmed-39652302014-03-25 SU-8 Guiding Layer for Love Wave Devices Roach, Paul Atherton, Shaun Doy, Nicola McHale, Glen Newton, Michael I. Sensors (Basel) Full Paper SU-8 is a technologically important photoresist used extensively for the fabrication of microfluidics and MEMS, allowing high aspect ratio structures to be produced. In this work we report the use of SU-8 as a Love wave sensor guiding layer which allows the possibility of integrating a guiding layer with flow cell during fabrication. Devices were fabricated on ST-cut quartz substrates with a single-single finger design such that a surface skimming bulk wave (SSBW) at 97.4 MHz was excited. SU-8 polymer layers were successively built up by spin coating and spectra recorded at each stage; showing a frequency decrease with increasing guiding layer thickness. The insertion loss and frequency dependence as a function of guiding layer thickness was investigated over the first Love wave mode. Mass loading sensitivity of the resultant Love wave devices was investigated by deposition of multiple gold layers. Liquid sensing using these devices was also demonstrated; water-glycerol mixtures were used to demonstrate sensing of density-viscosity and the physical adsorption and removal of protein was also assessed using albumin and fibrinogen as model proteins. Molecular Diversity Preservation International (MDPI) 2007-11-01 /pmc/articles/PMC3965230/ /pubmed/28903244 Text en © 2007 by MDPI (http://www.mdpi.org). Reproduction is permitted for noncommercial purposes.
spellingShingle Full Paper
Roach, Paul
Atherton, Shaun
Doy, Nicola
McHale, Glen
Newton, Michael I.
SU-8 Guiding Layer for Love Wave Devices
title SU-8 Guiding Layer for Love Wave Devices
title_full SU-8 Guiding Layer for Love Wave Devices
title_fullStr SU-8 Guiding Layer for Love Wave Devices
title_full_unstemmed SU-8 Guiding Layer for Love Wave Devices
title_short SU-8 Guiding Layer for Love Wave Devices
title_sort su-8 guiding layer for love wave devices
topic Full Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3965230/
https://www.ncbi.nlm.nih.gov/pubmed/28903244
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