Designing surface-enhanced Raman scattering (SERS) platforms beyond hotspot engineering: emerging opportunities in analyte manipulations and hybrid materials
Surface-enhanced Raman scattering (SERS) is a molecule-specific spectroscopic technique
with diverse applications in (bio) chemistry, clinical diagnosis and toxin sensing. While …
with diverse applications in (bio) chemistry, clinical diagnosis and toxin sensing. While …
Towards a point-of-care SERS sensor for biomedical and agri-food analysis applications: A review of recent advancements
The growing demand for reliable and robust methodology in bio-chemical sensing calls for
the continuous advancement of sensor technologies. Over the last two decades, surface …
the continuous advancement of sensor technologies. Over the last two decades, surface …
Facile fabrication of hierarchical textures for substrate-independent and durable superhydrophobic surfaces
Y He, L Wang, T Wu, Z Wu, Y Chen, K Yin - Nanoscale, 2022 - pubs.rsc.org
On account of their wide range of applications in self-cleaning, anti-icing, frost suppression,
etc., superhydrophobic surfaces have attracted considerate attention. However, most of the …
etc., superhydrophobic surfaces have attracted considerate attention. However, most of the …
Quantitative and sensitive SERS platform with analyte enrichment and filtration function
Surface-enhanced Raman scattering (SERS) technique with naturally born analyte
identification capability can achieve ultrahigh sensitivity. However, the sensitivity and …
identification capability can achieve ultrahigh sensitivity. However, the sensitivity and …
The application of coffee-ring effect in analytical chemistry
M Yang, D Chen, J Hu, X Zheng, ZJ Lin… - TrAC Trends in Analytical …, 2022 - Elsevier
Coffee-ring effect is an omnipresent phenomenon, it features the circular deposition on the
surface after the evaporation of a droplet containing particles. Ever since the seminal report …
surface after the evaporation of a droplet containing particles. Ever since the seminal report …
Recent progress on three-dimensional substrates for surface-enhanced Raman spectroscopic analysis
W Hu, L **a, Y Hu, G Li - Microchemical Journal, 2022 - Elsevier
Surface-enhanced Raman spectroscopy (SERS) has emerged as a promising spectroscopic
technique due to its unique advantages of “spectroscopic fingerprint”, fast response and …
technique due to its unique advantages of “spectroscopic fingerprint”, fast response and …
Tracking airborne molecules from afar: three-dimensional metal–organic framework-surface-enhanced Raman scattering platform for stand-off and real-time …
Stand-off Raman spectroscopy combines the advantages of both Raman spectroscopy and
remote detection to retrieve molecular vibrational fingerprints of chemicals at inaccessible …
remote detection to retrieve molecular vibrational fingerprints of chemicals at inaccessible …
Plasmonic nanoparticle-metal–organic framework (NP–MOF) nanohybrid platforms for emerging plasmonic applications
Because of the versatility of plasmonic nanoparticles, there have been major improvements
in tailoring the plasmonic effects for a plethora of applications. However, a major bottleneck …
in tailoring the plasmonic effects for a plethora of applications. However, a major bottleneck …
Quantitative label-free SERS detection of trace fentanyl in biofluids with a freestanding hydrophobic plasmonic paper biosensor
The prevalence of fentanyl abuse raises global public health concerns with an
unprecedented surge in overdose deaths. Rapid identification and quantification of fentanyl …
unprecedented surge in overdose deaths. Rapid identification and quantification of fentanyl …
Vertically aligned nanostructures for a reliable and ultrasensitive SERS-active platform: Fabrication and engineering strategies
Surface-enhanced Raman spectroscopy (SERS) is a powerful cross-disciplinary analytical
technique allowing ultrasensitive detection of various analytes with a fingerprint-like …
technique allowing ultrasensitive detection of various analytes with a fingerprint-like …