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Fourier transform infrared spectroscopy (FTIR) [1] is a technique used to obtain an infrared spectrum of absorption or emission of a solid, liquid, or gas. An FTIR spectrometer simultaneously collects high-resolution spectral data over a wide spectral range.
The FT-IR spectra were recorded using a Nicolet 170SX or a JASCO FT/IR-410 spectrometer. For spectra recorded in the Nicolet spectrometer, the data were stored at intervals of 0.5 cm −1 in the 4,000 – 2,000 cm −1 region and of 0.25 cm −1 in the 2,000 – 400 cm −1 region and the spectral resolution was 0.25 cm −1.
Biological Magnetic Resonance Data Bank University of Wisconsin biological molecules including ligands, cofactors, peptides, saccharides NMR spectroscopy "BMRB". BRENDA Technical University of Braunschweig: enzymes ligands "BRENDA". Carotenoids Database carotenoids CA "Carotenoids". 1195 CCCBDB: Computational Chemistry Comparison and Benchmark ...
Reflection-absorption FTIR: Sample is usually prepared as a thick block and is polished into a smooth surface. [4] As the IR beam strikes the sample surface, some of the energy is absorbed by the top layer (<10 μm) of the bulk sample. The altered incident beam is then reflected and carry the composition information of the targeted surface area.
Available spectra data and plots for: Infrared spectroscopy (IR) spectra. Fourier transform spectroscopy (FT-IR) [78] Raman spectroscopy (IR) [79] Nuclear magnetic resonance (NMR) spectra. 1 H chemical shifts [80] [81] and coupling constants (empirical) 13 C chemical shifts, [80] [81] Boltzmann averaged shifts, and 13 C DEPT spectra; 2D H vs H ...
The Spectral Database for Organic Compounds (SDBS) is developed and maintained by Japan's National Institute of Advanced Industrial Science and Technology. SDBS includes 14700 1 H NMR spectra and 13000 13 C NMR spectra as well as FT-IR, Raman, ESR, and MS data. The data are stored and displayed as an image of the processed data.
NIST Mass Spectral Search v.3.0 Commercial Program: This software contains the NIST/EPA/NIH Mass Spectral Library of electron ionization (EI) and the NIST Tandem Library of product-ion mass spectra in a searchable database. Additional features include the NIST MS Interpreter Program and AMDIS.
The sample will absorb some of the light, causing the spectra to be different. The ratio of the "sample spectrum" to the "background spectrum" is directly related to the sample's absorption spectrum. Accordingly, the technique of "Fourier-transform spectroscopy" can be used both for measuring emission spectra (for example, the emission spectrum ...
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