Detection of small molecules with surface plasmon resonance by synergistic plasmonic effects of nanostructured surfaces and graphene
- Surface plasmon resonance depends on the dielectric medium at the vicinity and makes it a quasi-universal detector. Therefore, and due to the label-free nature, SPR is a widely used sensing tool for real‐time monitoring molecular interactions of various analytes. However, detection of highly diluted analytes and small molecules (< 400 Da) is still challenging. Gold nanohole arrays provideSurface plasmon resonance depends on the dielectric medium at the vicinity and makes it a quasi-universal detector. Therefore, and due to the label-free nature, SPR is a widely used sensing tool for real‐time monitoring molecular interactions of various analytes. However, detection of highly diluted analytes and small molecules (< 400 Da) is still challenging. Gold nanohole arrays provide plasmonic hotspots with improved surface sensitivity and 2D carbon nanomaterials enable binding near the surface. Both effects together are promising in the development of SPR sensors for the efficient determination of small molecules. Graphene is known for efficient binding of molecules with delocalized aromatic π-systems. Additionally, the electromagnetic field is locally enhanced and modulated by the interaction of graphene photonics with the plasmonics of metal nanostructures. The advantages of chemical vapor deposition (CVD) graphene over reduced graphene oxide (rGO) is illustrated by a proof of concept study. In comparison to substrates consisting of a continuous film the surface sensitivity is enhanced for a nanohole arrays and further improved for CVD graphene functionalization in contrast to rGO. The feasibility of the sensor was demonstrated for the detection of adenine down to a concentration of 0.9 μM.…


| Author: | Christa Genslein, Peter Hauser, Eva-Maria Kirchner, Rudolf BierlOTH, Antje J. Baeumner, Thomas HirschORCiD |
|---|---|
| DOI: | https://doi.org/10.1117/12.2252256 |
| Parent Title (English): | SPIE Proceedings, Plasmonics in Biology and Medicine XIV, 2017, San Francisco, California |
| Document Type: | conference proceeding (article) |
| Language: | English |
| Year of first Publication: | 2017 |
| Release Date: | 2021/03/15 |
| Volume: | 10080 |
| Issue: | 1008001F |
| Note: | This work has been supported by the DFG Research Training Group 1570. Part of the work was funded by the GermanFederal Ministry for Economic Affairs and Energy (BMWi) through the project “MOSES”, grant 03ET75238. |
| Institutes: | Fakultät Angewandte Natur- und Kulturwissenschaften |
| Fakultät Angewandte Natur- und Kulturwissenschaften / Sensorik-Applikationszentrum (SappZ) | |
| research focus: | Digitale Transformation |
| Frontdoor-URL: | https://opus4.kobv.de/opus4-oth-regensburg/1436 |


