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- W1994484380 endingPage "484" @default.
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- W1994484380 abstract "Although the phenomenon of surface plasmon resonance (SPR) is known for more than a century now, traditional prism-based SPR platforms have hardly escaped the research laboratories despite being recognized for the sensitive and specific performance. Significant efforts have been made over the last years to overcome their existing limitations by coupling the SPR phenomenon to the fiber optic (FO) technology. While this platform has been promoted as cost-effective and simpler alternative capable of handling label-free bioassays, quantification and real-time monitoring of biomolecular interactions, examples of its applicability in sensing and biosensing remain to date very limited. The FO-SPR system is still in development and requires further advancements for reaching the stability and sensitivity of the benchmark SPR systems. Among existing strategies for device improvement, those based on modifying the FO tips using nanomaterials are mostly studied. These small-scale objects provide a wide range of possibilities for alternating the architecture of the FO sensitive zone, enabling also unique effects such as localized SPR (LSPR). This mini-review summarizes the latest innovations in the fabrication procedures which use nanoparticles or other nanomaterials, aiming at FO-SPR technology performance improvements, as well as addition of new device features and functionalities." @default.
- W1994484380 created "2016-06-24" @default.
- W1994484380 creator A5000562959 @default.
- W1994484380 creator A5009911306 @default.
- W1994484380 creator A5064200316 @default.
- W1994484380 creator A5078546082 @default.
- W1994484380 date "2015-09-01" @default.
- W1994484380 modified "2023-10-18" @default.
- W1994484380 title "Smart design of fiber optic surfaces for improved plasmonic biosensing" @default.
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- W1994484380 doi "https://doi.org/10.1016/j.nbt.2015.03.012" @default.
- W1994484380 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/25858811" @default.
- W1994484380 hasPublicationYear "2015" @default.
- W1994484380 type Work @default.