Annual Review of Analytical Chemistry · 2016 · 347 citations · 121 references
EngineeringBiomedical EngineeringChemistryBiosensing SystemsAnalytical ChemistryBioimagingMolecular ImagingBiophysicsMolecular SpectroscopyInfrared TechnologyInfrared SpectroscopyProcess AnalysisBiomedical AnalysisNear-infrared SpectroscopyMid-infrared SpectroscopyOptical SensorsMir SpectroscopyBiomedical DiagnosticsNatural SciencesSpectroscopyInfrared SensorBiomolecular SpectroscopyMiniaturized Device TechnologySpectroscopic MethodInfrared Systems
Infrared spectroscopy in the 3-20 μm spectral window has evolved from a routine laboratory technique into a state-of-the-art spectroscopy and sensing tool by benefitting from recent progress in increasingly sophisticated spectra acquisition techniques and advanced materials for generating, guiding, and detecting mid-infrared (MIR) radiation. Today, MIR spectroscopy provides molecular information with trace to ultratrace sensitivity, fast data acquisition rates, and high spectral resolution catering to demanding applications in bioanalytics, for example, and to improved routine analysis. In addition to advances in miniaturized device technology without sacrificing analytical performance, selected innovative applications for MIR spectroscopy ranging from process analysis to biotechnology and medical diagnostics are highlighted in this review.
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Fourier Transform Infrared Spectrometry
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