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The hyphenation of chromatography and FT-IR

Analytical Chemistry, 1986
The challenge of establishing the identities of environmental samples has been met by a combination of chromatography and FT-IR spectrometry. The separative powers of chromatography combined with the very large library of IR spectra yields both qualitative and quantitative information.
Peter R. Griffiths   +3 more
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FT-IR Studies of Ionomers

1987
Perhaps the most widely accepted model of ionomer superstructure is the multiplet-cluster concept advanced by Eisenberg [1,2]. This framework has dominated the interpretation of many vibrational spectroscopic studies to the extent that specific infrared bands and Raman lines have been separately assigned to multiplets or clusters.
Paul C. Painter   +2 more
openaire   +1 more source

Capillary GC/FT-IR

Analytical Chemistry, 1983
P R, Griffiths   +2 more
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Emerging Techniques in Biophysical FT-IR

Analytical Chemistry, 1988
R A, Dluhy, R, Mendelsohn
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FT-IR spectroscopy in catalysis

Acta Physica Hungarica, 1987
Supported metal catalysts are opaque to infrared rotation generally below 1200 cm−1 thereby preventing all the very important vibrations involving surface-adsorbate or “metal-ligand” motions from being observed by the conventional transmission technique. The possible methods which do not suffer from these limitations are summarized in this paper.
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Chromatography and FT-IR Spectrometry

1980
The fact that is is possible to acquire an interferogram in less than one second makes FT-IR spectrometry an excellent technique for studying transient species. By far the most important application of this rapid-scanning property is the on-line identification of peaks eluting from a gas chromatograph (GC/FT-IR).
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FT-IR SPECTROSCOPY

Analytical Chemistry, 1995
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FT/IR of catalysts

Applied Catalysis, 1982
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Multimedia FT-IR

Analytical Chemistry, 1995
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