Transition metal carbonyls exhibit strong CO absorptions in the 2200–1800 cm−1 region, which is free of interference from other functional groups. This feature has led to their applications in bio-imaging and -sensing, in particular through mid-IR, Raman and more recently, surface-enhanced Raman spectroscopy (SERS). Their use in mid-IR quantitative sensing based on vibrational intensities, and chemical sensing based on frequency shifts and vibrational lifetimes, is reviewed. Their development for Raman sensing following the breakthrough in SERS highlights the potential of coupling metal carbonyls to plasmonic nanostructures as novel optical materials for SERS-based bio-imaging and -sensing.ASTAR (Agency for Sci., Tech. and Research, S’pore)...
Facile detection of indoor semi-volatile organic compounds (SVOCs) is a critical issue to raise an i...
By taking advantage of the spectral properties of metal carbonyls, we have designed a surface-enhanc...
The plasmon resonance of noble metal nanoparticles (NP) manifests itself in a variety of extraordina...
Metal carbonyls, a class of organometallic complexes that consist of carbon monoxide (CO) ligands co...
International audienceMetal–carbonyl complexes are attractive structures for bio‐imaging. In additio...
Conjugates of organometallic osmium carbonyl clusters and gold nanoparticles (see picture) show a st...
A novel nanosensor was explored for the highly selective detection of intracellular carbon monoxide ...
A metal carbonyl-functionalized nanostructured substrate can be used in a rapid and simple assay for...
Raman spectroscopy is used to study vibrational modes in molecules. Depending on the constituent ato...
Raman spectroscopy is used to study vibrational modes in molecules. Depending on the constituent ato...
In this short summary we summarize some of the latest developments in vibrational spectroscopic tool...
In this short summary we summarize some of the latest developments in vibrational spectroscopic tool...
Surface-enhanced Raman scattering has recently become a powerful vibrational spectroscopic tool for ...
ince the discovery of the enhanced Raman signals on a roughed metallic surface, the SERS technique h...
Plasmonic Enhancement of the electric field is the basis of the Surface-enhanced Raman Scattering te...
Facile detection of indoor semi-volatile organic compounds (SVOCs) is a critical issue to raise an i...
By taking advantage of the spectral properties of metal carbonyls, we have designed a surface-enhanc...
The plasmon resonance of noble metal nanoparticles (NP) manifests itself in a variety of extraordina...
Metal carbonyls, a class of organometallic complexes that consist of carbon monoxide (CO) ligands co...
International audienceMetal–carbonyl complexes are attractive structures for bio‐imaging. In additio...
Conjugates of organometallic osmium carbonyl clusters and gold nanoparticles (see picture) show a st...
A novel nanosensor was explored for the highly selective detection of intracellular carbon monoxide ...
A metal carbonyl-functionalized nanostructured substrate can be used in a rapid and simple assay for...
Raman spectroscopy is used to study vibrational modes in molecules. Depending on the constituent ato...
Raman spectroscopy is used to study vibrational modes in molecules. Depending on the constituent ato...
In this short summary we summarize some of the latest developments in vibrational spectroscopic tool...
In this short summary we summarize some of the latest developments in vibrational spectroscopic tool...
Surface-enhanced Raman scattering has recently become a powerful vibrational spectroscopic tool for ...
ince the discovery of the enhanced Raman signals on a roughed metallic surface, the SERS technique h...
Plasmonic Enhancement of the electric field is the basis of the Surface-enhanced Raman Scattering te...
Facile detection of indoor semi-volatile organic compounds (SVOCs) is a critical issue to raise an i...
By taking advantage of the spectral properties of metal carbonyls, we have designed a surface-enhanc...
The plasmon resonance of noble metal nanoparticles (NP) manifests itself in a variety of extraordina...