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Solvents for carbon-13 nuclear magnetic resonance

Manatt SL, Horowitz D, Horowitz R, Pimnell RP, Solvent swelling for enhancement of carbon-13 nuclear magnetic resonance spectral information from insoluble polymers chloromethylation levels in crosslinked, Anal. Chem., 52 1529-1532, 1980. [Pg.310]

Charge transfer complexes of styrene and acrylonitrile have been shown to exist when in the presence of zinc chloride. Proton nuclear magnetic resonance spectroscopy has been used to establish this effect. In the proper solvents styrene and acrylonitrile will form occluded macroradicals which may then be used to form block copolymers. These block copolymers occur both in the presence and absence of zinc chloride. Pyrolysis gas chromatography, differential scanning calorimetry, and solubility studies show the properties of the two copolymers and their various block copolymers to be quite similar. Differences in the copolymers may be seen from carbon-13 nuclear magnetic resonance spectroscopy. Yield data for the block copolymers is reported. [Pg.105]

Instmmental methods of analysis provide information about the specific composition and purity of the amines. QuaUtative information about the identity of the product (functional groups present) and quantitative analysis (amount of various components such as nitrile, amide, acid, and deterruination of unsaturation) can be obtained by infrared analysis. Gas chromatography (gc), with a Hquid phase of either Apiezon grease or Carbowax, and high performance Hquid chromatography (hplc), using siHca columns and solvent systems such as isooctane, methyl tert-huty ether, tetrahydrofuran, and methanol, are used for quantitative analysis of fatty amine mixtures. Nuclear magnetic resonance spectroscopy (nmr), both proton ( H) and carbon-13 ( C), which can be used for quaHtative and quantitative analysis, is an important method used to analyze fatty amines (8,81). [Pg.223]

Nuclear magnetic resonance spectroscopy of dilute polymer solutions is utilized routinely for analysis of tacticlty, of copolymer sequence distribution, and of polymerization mechanisms. The dynamics of polymer motion in dilute solution has been investigated also by protoni - and by carbon-13 NMR spectroscopy. To a lesser extent the solvent dynamics in the presence of polymer has been studied.Little systematic work has been carried out on the dynamics of both solvent and polymer in the same systan. [Pg.143]


See other pages where Solvents for carbon-13 nuclear magnetic resonance is mentioned: [Pg.186]    [Pg.108]    [Pg.97]    [Pg.166]    [Pg.155]    [Pg.380]    [Pg.76]   


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Carbon magnetization

Carbon nuclear magnetic resonance

Carbon solvents

Carbon-13 nuclear magnetic

Carbon-13 nuclear magnetic resonance solvents

Carbon-13, magnetic resonance

Carbons resonances

Nuclear magnetic resonance solvents

Nuclear solvents

Solvent carbonate

Solvent resonance

Solvents, for carbon-13 nuclear magnetic

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