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Nuclear magnetic resonance spectroscop

S. 11.2.2 Nuclear Magnetic Resonance Spectroscopic Studies S. 11.2.3 Infrared Spectroscopic Studies... [Pg.299]

Al-Sa ady, A.K.H., Moss, K., McAuliffe, C.A. and Parish, R.V. (1984) Mossbauer and nuclear magnetic resonance spectroscopic studies on Myocrisin , Solganol , Auranofin , and related gold (I) thiolates. Journal of the Chemical Society, Dalton Transactions, (8), 1609-1616. [Pg.311]

Sherriff, B. L., Tisdale, M. A., Sayer, B. G., Schwarcz, H. P. and Knyf, M. (1995) Nuclear magnetic resonance spectroscopic and isotopic analysis of carbonized residues from subartic Canadian prehistoric pottery. Archaeometry 37, 95 111. [Pg.431]

A review has appeared regarding the infrared and nuclear magnetic resonance spectroscopic investigations of quinolizidine alkaloids (303). The connection between the C/D ring junction and the existence of Bohlmann bands in the IR spectra of indolo[2,3-a]quinolizidines has been reinvestigated and interpreted (304). [Pg.248]

Meyer, C., Busche, S., Welsch, N., Wegmann, J., Gauglitz, G, and Albert, K., Contact-angle, ellipsometric, and spin-diffusion solid-state nuclear magnetic resonance spectroscopic investigations of copolymeric stationary phases immobilized on Si02 surfaces, Area/. Bioanal. Chem., 382, 1465, 2005. [Pg.298]

Duus J0, Gotfredsen CH, Bock K (2000) Carbohydrate Structural Determination by NMR Spectroscopy Modem Methods and Limitations. Chem Rev 100 4589 Agrawal PK, Pathak AK (1996) Nuclear Magnetic Resonance Spectroscopic Approaches for the Determination of friterglycosidic Linkage and Sequence in Oligosaccharides. Phytochem Anal 7 113... [Pg.152]

Tables 3-2 and 3-3 summarize the infrared and proton-NMR (nuclear magnetic resonance) spectroscopic properties of alcohols and ethers. In the proton NMR, the oxygen atom is deshielding. Phenols and alcohols rapidly exchange protons so their NMR spectra are solvent dependant. The alcohol and ether groups don t have any characteristics absorptions in UV-vis spectra. Tables 3-2 and 3-3 summarize the infrared and proton-NMR (nuclear magnetic resonance) spectroscopic properties of alcohols and ethers. In the proton NMR, the oxygen atom is deshielding. Phenols and alcohols rapidly exchange protons so their NMR spectra are solvent dependant. The alcohol and ether groups don t have any characteristics absorptions in UV-vis spectra.
Lin, S.-T., Ding, M.-R, Ghang, C.-W. et al.. Nuclear magnetic resonance spectroscopic study on ionic liquids of l-alkyl-3-methylimidazolium salts. Tetrahedron, 60, 9441,2004. [Pg.368]

J. Forbes, C. Husted and E. Oldfield, High-field, high-resolution magic-angle samplespinning nuclear magnetic resonance spectroscopic studies of gel and liquid crystalline lipid bilayers and the effects of cholesterol, J. Am. Chem. Soc., 1988, 110, 1059-1065. [Pg.288]

Cass, A. E. G., Hill, H. A. O. Anion binding to copper(I) superoxide dismutase A high resolution H nuclear magnetic resonance spectroscopic study. In Chemical and Biochemical Aspects of Superoxide and Superoxide Dismutase (Bannister, J. V., Hill, H. A, O., eds.). New York-Amsterdam-Oxford, Elsevier/North-Holland, 1980, pp. 290-298... [Pg.29]

Larger oligopeptide hormones are also stabilized by such interactions. A nuclear magnetic resonance spectroscopic study of somatostatin by Hirschmann and co-workers (Arison et al., 1981) revealed that the side chains of phenylalanine-6 and phenylalanine-11 make the edge-to-face aromatic-aromatic interaction. Synthetic studies have shown that elimination of one or both of the aromatic groups at positions 6 and 11 abolishes biological activity. However, there is one notable exception. When... [Pg.168]

Parrot, I., Huang, P.C., Khosla, C. 2002. Circular dichroism and nuclear magnetic resonance spectroscopic analysis of immunogenic gluten peptides and their analogs. J Biol Chem 277 455—412. [Pg.314]

Nuclear magnetic resonance spectroscopic technique used to elucidate chemical structure and molecular dynamics. [Pg.526]

Forbes J, Bowers J, Shan X, Moran L, Oldfield E, Moscarello MA, Some new developments in solid-state nuclear magnetic resonance spectroscopic studies of lipids and biological membranes, including the effects of cholesterol in model and natural systems, /. Chem. Soc. Faraday Trans., 84 3821-3849, 1988. [Pg.311]

VIII. Appendix I Nuclear Magnetic Resonance Spectroscopic Data and... [Pg.1]

APPENDIX I NUCLEAR MAGNETIC RESONANCE SPECTROSCOPIC DATA AND AVAILABILITY OF STRUCTURAL DATA FOR METALLOBORANE CLUSTERS WITH A RATIO OF M AND B ATOMS OF AT LEAST 1 1... [Pg.37]

M. Jaseja, R. N. Rej, F. Sauriol, and A. S. Perlin, Novel regio- and stereoselective modifications of heparin in alkaline solution. Nuclear magnetic resonance spectroscopic evidence, Can. J. Chem., 67 (1989) 1449-1456. [Pg.194]

Timken, K. C., S. E. Schramm, R. J. Kirkpatrick, and E. Oldfield (1987). Solid-state oxygen-17 nuclear magnetic resonance spectroscopic studies of alkaline earth metasilicates. J. Phys. Chem. 91, 1054-58. [Pg.500]

Hutchinson, C.R. The use of isotopic hydrogen and nuclear magnetic resonance spectroscopic techniques for the analysis of biosynthetic pathways. J. Nat. Prod. 1982, 45, 27-37. [Pg.257]

Li, S. Purdy, W.C. Circular dichroism, ultraviolet, and proton nuclear magnetic resonance spectroscopic studies of the chiral recognition mechanism of P-cyclodextrin. Anal. Chem. 1992, 64 (13), 1405-1412. [Pg.691]

Johnston, C. T., Sposito, G., and Earl, W. L. (1993) Surface Spectroscopy of Environmental Particles by Fourier-Transform Infrared and Nuclear Magnetic Resonance Spectroscope. In Environmental Particles, Vol. II, J. Buffle and H. P. van Leeuwen, Eds., Lewis, Chelsea, MI. [Pg.951]

Thompson AR, Kimwar AC, Gutowsky HS, Oldfield E (1987) Oxygen-17 and aluminum-27 nuclear magnetic resonance spectroscopic investigations of aluminum(III) hydrolysis products. J Chem Soc Dalton Trans 1987 2317-2322... [Pg.190]

Baltisberger JH, Xu Z, Stebbins JF, Wang SH, Pines A (1996) Triple-quantum two-dimensional Al magic-angle spinning nuclear magnetic resonance spectroscopic study of aluminosilicate and aluminate crystals and glasses. J Am Chem Soc 118 7209-7214... [Pg.237]

Lian, C., Le, H., Montez, B., Patterson, J., et al. (1994) 19F nuclear magnetic resonance spectroscopic study of fluorophenylalanine- and fluorotryptophan-labeled avian egg white lysozymes. Biochemistry, 33, 5238-5245. [Pg.490]

Otvos JD, Jeyarajah EJ, Bennett DW, Krauss RM. Development of a proton nuclear magnetic resonance spectroscopic method for determining plasma lipoprotein concentrations and subspecies distributions from a single, rapid measurement. Clin Chem 1992 38 1632-8. [Pg.977]

Beckwith-Hall, B.M. Nicholson, J.K. Nicholls, A. Foxall, P.J.D. Lindon, J.C. Connor, S.C. Abdi, M. Connelly, J. Holmes, E. Nuclear Magnetic Resonance Spectroscopic and Principal Components Analysis Investigations into... [Pg.141]

Griffin, J.L. Williams, H.J. Sang, E. Clarke, K. Rae, C. Nicholson, J.K. Metabolic Profiling of Genetic Disorders A Multitissue H-1 Nuclear Magnetic Resonance Spectroscopic and Pattern Recognition Study into Dystrophic Tissue, Anal. Biochem. 293(1), 16-21 (2001). [Pg.144]


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Magnetic resonance spectroscopic

Nuclear spectroscopic

Spectroscopic nuclear magnetic resonance

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