The rotational spectral lines of HCCS and DCCS have been observed with a Fourier transform millimeter-wave spectrometer in combination with a pulsed discharge nozzle. The HCCS radical is produced by discharging a mixture of C 2 H 2 and CS 2 diluted in Ar. The DCCS radical is produced by using C 2 D
Millimetre-wave fourier transform spectroscopy for studies of the liquid state
β Scribed by J.E. Chamberlain; H.A. Gebbie; G.W.F. Pardoe; Mansel Davies
- Publisher
- Elsevier Science
- Year
- 1968
- Tongue
- English
- Weight
- 246 KB
- Volume
- 1
- Category
- Article
- ISSN
- 0009-2614
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β¦ Synopsis
The operational spectral range of Fourier transform spectroscopy, using a hfichelson interferometer, has been extended from far infrared wavelengths through the submillimetre region to a wavelength of 5 mm. Absorption and refraction spectra are typical liquid phase results are presented for significance of the results are discussed.
π SIMILAR VOLUMES
The Fourier transform infrared spectrum of monoisotopic 80 SeF 6 has been recorded in the 760-792 cm 01 region with an effective resolution of ca. 2.3 1 10 03 cm 01 . The 80 SeF 6 sample was prepared by burning monoisotopic 80 Se powder (99.2%) in an excess of fluorine. The analysis of infrared tran
The missing d 1 βΊ Ο© state has been observed for the first time and its spectroscopic parameters are consistent with the theoretical predictions of S. R. Langhoff and W. Bauschlicher, Jr. [J. Mol. Spectrosc. 143, 169 -179 (1990)]. Rotational analysis of a number of bands has been obtained and improve
Fourier-transform infrared spectroscopy offers considerable advantages over conventional dispersive methods for the characterization of highly absorbing materials such as coal. This technique has been applied to the determination of the functional groups present in three solvent-refined-coal samples