DocumentCode
190002
Title
Enhanced fluorescence through the incorporation of nanocones/gaps into a plasmonic gratings sensor platform
Author
Wood, Aaron ; Grant, Sheila ; Basuray, Sagnik ; Pathak, Avinash ; Bok, Sangho ; Mathai, Cherian ; Gangopadhyay, Keshab ; Gangopadhyay, Shubhra
Author_Institution
Bioeng., Univ. of Missouri - Columbia, Columbia, MO, USA
fYear
2014
fDate
2-5 Nov. 2014
Firstpage
1479
Lastpage
1482
Abstract
In this article, a novel plasmonic grating sensor platform was developed and tested for feasibility in sensor applications using a “lights-on” fluorescence based DNA sensor. The sensor platform combined the fluorescence enhancement of a grating-based plasmonic platform with the electric field intensifying effects of nano-scale cones and cavities. The gratings were made through a microcontact printing process that replicated HD-DVD discs in polymethylsilsesquioxane (PMSSQ) and coated in a thin gold film. Nanocavities were incorporated into the sensor platform during the printing process and nanocones were incorporated during the 100 nm gold deposition process. Fluorescently-tagged single-strand (SS) DNA molecules were immobilized onto the surface and were designed such that the molecules would fluoresce when bound to a complementary sequence. Sensor substrates were imaged after exposure to a mismatched and matched oligomer to quantify the fluorescence enhancement of the sensor. Much higher fluorescence intensity was observed on all of the plasmonic structures as compared to flat gold.
Keywords
DNA; chemical sensors; coatings; diffraction gratings; digital versatile discs; fluorescence; microsensors; nanosensors; nanostructured materials; optical films; optical sensors; plasmonics; polymer films; soft lithography; thin film sensors; DNA sensor; PMSSQ; SS; electric field intensifying effect; fluorescence enhancement; fluorescently-tagged single-strand DNA molecule; gold deposition process; microcontact printing process; nanocavity; nanocone-gap; nanoscale cone; oligomer; plasmonic grating sensor platform; polymethylsilsesquioxane; printing process; replicated HD-DVD discs; thin gold film coating; Fluorescence; Gold; Gratings; Optical surface waves; Plasmons; Surface treatment; Aptamer; Fluorescence; Grating; Microcontact; Nanocavity; Nanocone; Plasmonic;
fLanguage
English
Publisher
ieee
Conference_Titel
SENSORS, 2014 IEEE
Conference_Location
Valencia
Type
conf
DOI
10.1109/ICSENS.2014.6985294
Filename
6985294
Link To Document