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Hydrogel-Assisted 3D Volumetric Hotspot for Sensitive Detection by Surface-Enhanced Raman Spectroscopy
by
Lee, Seunghun
, Mun, ChaeWon
, Kim, Shin-Hyun
, Kim, Sunho
, Park, Sung-Gyu
, Yang, Jun-Yeong
, Lee, Soo Hyun
in
Carbocyanines - analysis
/ Contact angle
/ Energy
/ Gold - chemistry
/ Hydrogels
/ Limit of Detection
/ Microscopy
/ Nanostructures
/ Plasma etching
/ Polymers
/ Reproducibility
/ Reproducibility of Results
/ Silver - chemistry
/ Spectrum analysis
/ Spectrum Analysis, Raman
2022
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Hydrogel-Assisted 3D Volumetric Hotspot for Sensitive Detection by Surface-Enhanced Raman Spectroscopy
by
Lee, Seunghun
, Mun, ChaeWon
, Kim, Shin-Hyun
, Kim, Sunho
, Park, Sung-Gyu
, Yang, Jun-Yeong
, Lee, Soo Hyun
in
Carbocyanines - analysis
/ Contact angle
/ Energy
/ Gold - chemistry
/ Hydrogels
/ Limit of Detection
/ Microscopy
/ Nanostructures
/ Plasma etching
/ Polymers
/ Reproducibility
/ Reproducibility of Results
/ Silver - chemistry
/ Spectrum analysis
/ Spectrum Analysis, Raman
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Hydrogel-Assisted 3D Volumetric Hotspot for Sensitive Detection by Surface-Enhanced Raman Spectroscopy
by
Lee, Seunghun
, Mun, ChaeWon
, Kim, Shin-Hyun
, Kim, Sunho
, Park, Sung-Gyu
, Yang, Jun-Yeong
, Lee, Soo Hyun
in
Carbocyanines - analysis
/ Contact angle
/ Energy
/ Gold - chemistry
/ Hydrogels
/ Limit of Detection
/ Microscopy
/ Nanostructures
/ Plasma etching
/ Polymers
/ Reproducibility
/ Reproducibility of Results
/ Silver - chemistry
/ Spectrum analysis
/ Spectrum Analysis, Raman
2022
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Hydrogel-Assisted 3D Volumetric Hotspot for Sensitive Detection by Surface-Enhanced Raman Spectroscopy
Journal Article
Hydrogel-Assisted 3D Volumetric Hotspot for Sensitive Detection by Surface-Enhanced Raman Spectroscopy
2022
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Overview
Effective hotspot engineering with facile and cost-effective fabrication procedures is critical for the practical application of surface-enhanced Raman spectroscopy (SERS). We propose a SERS substrate composed of a metal film over polyimide nanopillars (MFPNs) with three-dimensional (3D) volumetric hotspots for this purpose. The 3D MFPNs were fabricated through a two-step process of maskless plasma etching and hydrogel encapsulation. The probe molecules dispersed in solution were highly concentrated in the 3D hydrogel networks, which provided a further enhancement of the SERS signals. SERS performance parameters such as the SERS enhancement factor, limit-of-detection, and signal reproducibility were investigated with Cyanine5 (Cy5) acid Raman dye solutions and were compared with those of hydrogel-free MFPNs with two-dimensional hotspots. The hydrogel-coated MFPNs enabled the reliable detection of Cy5 acid, even when the Cy5 concentration was as low as 100 pM. We believe that the 3D volumetric hotspots created by introducing a hydrogel layer onto plasmonic nanostructures demonstrate excellent potential for the sensitive and reproducible detection of toxic and hazardous molecules.
Publisher
MDPI AG,MDPI
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