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Fourier transform infrared spectroscop

Nicholson, J. W., Brookman, P. J., Lacy, O. M. Wilson, A. D. (1988b). Fourier transform infrared spectroscopic study of the role of tartaric acid in glass-ionomer cements. Journal of Dental Research, 67, 145CM. [Pg.88]

Fourier transform infrared spectroscopic examination of these polymers also supports this conclusion. As can be observed in Figure 6, a peak occurring at 2086 cm->l is seen in all the copolysilanes. This absorbance has been assigned to a Si-H stretching absorption (15). Such a moiety is expected if silyl radical abstraction of a hydrogen occurs. Examination of the infrared spectra for a Si-CHo-Si vibrational peak which should be located between 1000 and 1100 cm-1 is inconclusive due to the presence of a multitude of absorbances in this region. [Pg.117]

Fourier Transform Infrared Spectroscopic Investigation of Adsorbed Intermediates in Electrochemical Reactions... [Pg.351]

Grap, R.T., Koenig, J.L. and Ishida, H. (1985). Diffuse reflectance fourier transform infrared spectroscopic study of chemical bonding and hydrothermal stability of an aminosilane on metal oxide surfaces. J. Adhesion 18, 93-110. [Pg.39]

Ishida, H., Koenig, J.L. (1978). Fourier transformed infrared spectroscopic study of the silane coupling agent/porous silica interface. J. Colloid. Interface Sci. 64, 555-564. [Pg.39]

Holmen, B.A. Tejedor-Tejedor, M.S. Casey, WA. (1997) Hydroxymate complexes in solution at the goethite/water interface. A. Cylindrical internal reflectance Fourier transform infrared spectroscopic study. Langmuir 13 2197... [Pg.590]

Figure 6 High pressure Fourier transform infrared spectroscopic data. Catalyst precursors (i) Ru3(C0)i2 glacial acetic acid, a) 600 atm CO/Hj, 100°C, b) 760 atm, 180°C (ii) Rug(CO)1j/EtgN in glacial acetic acid, c) 700 atm CO/H2, 200°C. Figure 6 High pressure Fourier transform infrared spectroscopic data. Catalyst precursors (i) Ru3(C0)i2 glacial acetic acid, a) 600 atm CO/Hj, 100°C, b) 760 atm, 180°C (ii) Rug(CO)1j/EtgN in glacial acetic acid, c) 700 atm CO/H2, 200°C.
Figure 7 High pressure Fourier transform infrared spectroscopic data. Catalyst precursor RuaCCO) Rh(C0)2acac, EtgN (Ru Rh Et3N 10 1 10) in glacial acetic acid. Reaction conditions (a) 750 atm, 100°C, (b) 850 atm, 175°C, (c) 880 atm, 200°C... Figure 7 High pressure Fourier transform infrared spectroscopic data. Catalyst precursor RuaCCO) Rh(C0)2acac, EtgN (Ru Rh Et3N 10 1 10) in glacial acetic acid. Reaction conditions (a) 750 atm, 100°C, (b) 850 atm, 175°C, (c) 880 atm, 200°C...
Barnes, I., K. H. Becker, and J. Starcke, Fourier Transform Infrared Spectroscopic Observations of Gaseous Nitrosyl Iodine, Nitryl Iodine, and Iodine Nitrate, J. Phys. Chem., 95, 9736-9740 (1991). [Pg.288]

Chen, J., V. Young, T. Zhu, and H. Niki, Long Path Fourier Transform Infrared Spectroscopic Study of the Reactions of CF,00 and CF,0 Radicals with N02, J. Phys. Chem., 97, 11696-11698 (1993a). [Pg.754]

H. Niki, P. D. Maker, C. M. Savage, and L. P. Breitenbach, Fourier transform infrared spectroscopic studies of atmospheric chemistry, in Spectroscopy in Chemistry and Physics Modern Trends, F. J. Comes, A. Muller, and W. J. Orville-Thomas, Eds., Elsevier, New York, 1980 and J. Mol. Struct., 59, 1 (1980). [Pg.132]

The attenuated total reflection (ATR) Fourier transform infrared spectroscopic (FT-fR) studies of Gendreu, Jakobsen, and others79 have the potential for direct determination of conformational changes during the adsorption process due to shifts in the infrared absorption bands. Sakurai et al. 80,81), have used ATR-FT1R, as well as CD, to probe conformational changes upon adsorption. [Pg.34]

Y. Cheng, N. Boden, R. J. Bushby, S. Clarkson, S. D. Evans, P. F. Knowles, A. Marsh, and R. E. Miles, Attenuated total reflection Fourier transform infrared spectroscopic characterization of fluid lipid bilayers tethered to solid supports, Langmuir 14, 893-844 (1998). [Pg.113]

In THE PAST DECADE, IMPROVEMENTS IN infrared spectroscopic instrumentation have contributed to significant advances in the traditional analytical applications of the technique. Progress in the application of Fourier transform infrared spectroscopy to physiochemical studies of colloidal assemblies and interfaces has been more uneven, however. While much Fourier transform infrared spectroscopic work has been generated about the structure of lipid bilayers and vesicles, considerably less is available on the subjects of micelles, liquid crystals, or other structures adopted by synthetic surfactants in water. In the area of interfacial chemistry, much of the infrared spectroscopic work, both on the adsorption of polymers or proteins and on the adsorption of surfactants forming so called "self-assembled" mono- and multilayers, has transpired only in the last five years or so. [Pg.1]

CD, Rocking Modes as Quantitative Fourier Transform Infrared Spectroscopic Probes of Conformational Disorder in Phospholipid Bilayers... [Pg.24]

Fourier-transform Raman and Fourier-transform infrared spectroscopic methods were adapted for the analysis of spironolactone and differentiation of its polymorphic forms [31,32],... [Pg.298]

H. Ishido and J. L. Koenig, Fourier transform infrared spectroscopic study of the structure of silane coupling agent on E-glass fiber, J. Colloid Interface Sci. 64(3), 565-576 (1978). [Pg.112]

L. F. Liotta, G. A. Martin, and G. Deganello, The influence of alkali metal ions in the chemisorption of CO and C02 on supported palladium catalysts, a Fourier transform infrared spectroscopic study, J. Catal. 164, 322-333 (1996). [Pg.368]

Nabedryk, E., Garavito, R. M., and Breton, J. (1988). The orientation of /3-sheets in porin. A polarized Fourier transform infrared spectroscopic investigation. Biophys.J. 53, 671-676. [Pg.68]

Jayaraman, V., Thiran, S., and Madden, D. R. (2000b). Fourier transform infrared spectroscopic characterization of a photolabile precursor of glutamate. FEBS Lett. 475, 278-282. [Pg.344]

D. Fourier Transform Infrared Spectroscopic Examination of Redox-Coupled Conformational Change in the Protein Moiety... [Pg.341]

Faniewski, K., Wannman, T., Hagman, G. Gas chromatography with mass spectrometric, atomic emission and Fourier transform infrared spectroscopic detection as complementary analytical techniques for the identification of unknown impurities in pharmaceutical analysis. J. Chromatogr. A 985, 275-282 (2003)... [Pg.201]

Hug, S. J., and Sulzberger, B. (1994) In Situ Fourier Transform Infrared Spectroscopic Evidence for the Formation of Several Different Surface Complexes of Oxalate on Ti02 in the Aqueous Phase, Langmuir 10, 3587-3597. [Pg.950]

Kennedy, D. F., Slotboom, A. J., de Haas, G. H., and Chapman, D. (1990). A Fourier transform infrared spectroscopic (FTIR) study of porcine and bovine pancreatic phospholipase A2 and their interaction with substrate analogues and a transition-state inhibitor. Biochim. Biophys. Acta 1040,317-326. [Pg.84]

Seto, G. W., Marwaha, S., Kobewka, D. M., et al. (2007) Interactions of the Australian tree frog antimicrobial peptides aurein 1.2, citropin 1.1 and maculatin 1.1 with lipid model membranes Differential scanning calorimetric and Fourier transform infrared spectroscopic studies. Biochimica et Biophysica Acta, 1768, 2787-2800. [Pg.489]

Hug, S.J. and Sulzberger, B., In situ Fourier transform infrared spectroscopic evidence for the foimation of several different surface complexes of oxalate on TiOj in the aqueous phase, Langmuir, 10, 3587, 1994. [Pg.1002]

Yoshida S. Miyazaki M, Sakai K, Takeshita M, Yuasa S, Sato A, et al. Fourier transform infrared spectroscopic analysis of rat brain microsomal membranes modified by dietary fatty acids—Possible correlation with altered learning behavior. Biospectroscopy 1997 3 281-290. [Pg.234]

SGT St. Germain and DG Gray. Photoacoustic Fourier Transform Infrared Spectroscopic Study of Mechanical Pulp Brightening. J. Wood Chem. Technol. 7 33-50, 1987. [Pg.133]

Variable-Temperature Diffuse Reflectance Fourier Transform Infrared Spectroscopic Studies of Amine Desorption from a Siliceous Surface... [Pg.254]


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