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NMR isolation

Base i-Pr NEt ratios deteraiined by conversion to TMS enolethers ratios determined by H-NMR isolated yields (values in parenthesis determined by H-NMR). [Pg.241]

Brust A, Garson MJ (2004) Dereplication of Complex Natural Product Mixtures by 2D NMR Isolation of a New Carbonimidic Dichloride of Biosynthetic Interest from the Tropical Marine Sponge Stylotella aurantium. ACGC Chem Res Commun 17 33... [Pg.403]

Phenylpyrazine 4-oxide (268) gave a separable mixture of 2-acetoxy-6-phenylpyrazine (269), 2-acetoxy-3-phenylpyrazine (270), and 2-acetoxy-5-phenylpyrazine (271) [Ac20, Et3N, reflux, A, 6 h 68, 11, 8% respectively (by NMR), isolated in much lower yields].1575... [Pg.234]

In contrast, our Mitsunobu condensation chemistry proceeded nearly quantitatively after 4 hr at rt (by 31P-NMR isolated yield >80%) when conducted in dry dioxane using 1.5 equiv of AZT, TPP and DIAD. [Pg.235]

Scheme 1 Titanium-mediated addition of trialkyl alanes to aldehydes. All values indicate percentages yields were determined by H NMR, isolated yields... Scheme 1 Titanium-mediated addition of trialkyl alanes to aldehydes. All values indicate percentages yields were determined by H NMR, isolated yields...
The simplest use of an NMR spectnim, as with many other branches of spectroscopy, is for quantitative analysis. Furthennore, in NMR all nuclei of a given type have the same transition probability, so that their resonances may be readily compared. The area underneath each isolated peak in an NMR spectnim is proportional to the number of nuclei giving rise to that peak alone. It may be measured to 1% accuracy by digital integration of the NMR spectnim, followed by comparison with the area of a peak from an added standard. [Pg.1441]

Donor strengths, taken from ref. 207b, based upon the solvent effect on the symmetric stretching frequency of the soft Lewis acid HgBr2. Gutmann s donor number taken from ref 207b, based upon AHr for the process of coordination of an isolated solvent molecule to the moderately hard SbCL molecule in dichioroethane. ° Bulk donor number calculated as described in ref 209 from the solvent effect on the adsorption spectrum of VO(acac)2. Taken from ref 58, based on the NMR chemical shift of triethylphosphine oxide in the respective pure solvent. Taken from ref 61, based on the solvatochromic shift of a pyridinium-A-phenoxide betaine dye. [Pg.30]

The amino add analysis of all peptide chains on the resins indicated a ratio of Pro Val 6.6 6.0 (calcd. 6 6). The peptides were then cleaved from the resin with 30% HBr in acetic acid and chromatogra phed on sephadex LH-20 in 0.001 M HCl. 335 mg dodecapeptide was isolated. Hydrolysis followed by quantitative amino acid analysis gave a ratio of Pro Val - 6.0 5.6 (calcd. 6 6). Cycll2ation in DMF with Woodward s reagent K (see scheme below) yielded after purification 138 mg of needles of the desired cyc-lododecapeptide with one equiv of acetic add. The compound yielded a yellow adduct with potassium picrate, and here an analytically more acceptable ratio Pro Val of 1.03 1.00 (calcd. 1 1) was found. The mass spectrum contained a molecular ion peak. No other spectral measurements (lack of ORD, NMR) have been reported. For a thirty-six step synthesis in which each step may cause side-reaaions the characterization of the final product should, of course, be more elaborate. [Pg.236]

Adducts from various quaternary salts have been isolated, in reactions with aldehydes, a-ketoaldehydes, dialkylacylphosphonates and dialkyl-phosphonates, isocyanates, isothiocyanates, and so forth (Scheme 15) (36). The ylid (11) resulting from removal of a Cj proton from 3.4-dimethyl-S-p-hydroxyethylthiazolium iodide by NEtj in DMF gives with phenylisothiocyanate the stable dipolar adduct (12) that has been identified by its NMR spectrum and reactional product, such as acid addition and thiazolidine obtention via NaBH4 reduction (Scheme 16) (35). It must be mentioned that the adduct issued from di-p-tolylcarbodiimide is separated in its halohydrogenated form. An alkaline treatment occasions an easy ring expansion into a 1,4-thiazine derivative (Scheme 17) (35). [Pg.35]

Many monomeric heterocyclic anhydrobases can be isolated now using specific methods (44), but application of these methods to thiazole ring did not succeed however, appropriate conditions lead to the separation of a dimer, the structure of which has been established by its NMR Spectra and chemical reactivity (26). The most probable mechanism of its formation appears identical with the one previously described in the benzothiazolium series (24). A second molecule of quaternary salt A3... [Pg.37]

At first, the dimeric nature of the base isolated from 3-ethyl-2-methyl-4-phenylthiazolium was postulated via a chemical route. Indeed the adduct of ICH, on a similar 2-ethylidene base is a 2-isopropylthiazolium salt in the case of methylene base it is an anilinovinyl compound identified by its absorption spectrum and chemical reactivity (45-47). This dimeric structure of the molecule has been definitively established by its NMR spectrum. It is very similar to the base issued from 2.3-dimethyl-benzo thiazolium (48). It corresponds to 2-(3 -ethyl-4 -phenyl-2 -methylenethiazolinilydene)2-methyl-3-ethyl-4-phenylthiazoline (13). There is only one methyl signal (62 = 2.59), and two series of signals (63= 1.36-3.90, 63= 1.12-3.78) correspond to ethyl groups. Three protons attributed to positions T,5,5 are shifted to a lower field 5.93, 6.58, and 8.36 ppm. The bulk of the ten phenyl protons is at 7.3 ppm (Scheme 22). [Pg.39]

During the development of a new process or if unexpected problems arise, the support of a much better equipped laboratory may be necessary. This laboratory must be able to isolate impurities and determine the stmetures of impurities. Instmments like nmr, ms, and ir, and specialized chemists are a necessity in such a laboratory. [Pg.440]

In superacidic media, the carbocationic iatermediates, which were long postulated to exist duting Friedel-Crafts type reactions (9—11) can be observed, and even isolated as salts. The stmctures of these carbocations have been studied ia high acidity—low nucleophilicity solvent systems usiag spectroscopic methods such as nmr, ir, Raman, esr, and x-ray crystallography. [Pg.552]

Spectrometric Analysis. Remarkable developments ia mass spectrometry (ms) and nuclear magnetic resonance methods (nmr), eg, secondary ion mass spectrometry (sims), plasma desorption (pd), thermospray (tsp), two or three dimensional nmr, high resolution nmr of soHds, give useful stmcture analysis information (131). Because nmr analysis of or N-labeled amino acids enables determiaation of amino acids without isolation from organic samples, and without destroyiag the sample, amino acid metaboHsm can be dynamically analy2ed (132). Proteia metaboHsm and biosynthesis of many important metaboUtes have been studied by this method. Preparative methods for labeled compounds have been reviewed (133). [Pg.285]

The overall biosynthetic pathway to the tetracychnes has been reviewed (74). Studies (75—78) utilising labeled acetate and malonate and nmr analysis of the isolated oxytetracycline (2), have demonstrated the exclusive malonate origin of the tetracycline carbon skeleton, the carboxamide substituent, and the folding mode of the polyketide chain. Feeding experiments using [1- 02] acetate and analysis of the nmr isotope shift effects, led to the location of... [Pg.181]

No systematic study of the NMR spectra of pyridopyridazines has been undertaken, and only the spectra of a few isolated compounds such as the dihydro[4,3-c] derivative (302) <79X2027) have been recorded. [Pg.234]


See other pages where NMR isolation is mentioned: [Pg.980]    [Pg.1167]    [Pg.130]    [Pg.130]    [Pg.51]    [Pg.328]    [Pg.467]    [Pg.980]    [Pg.1167]    [Pg.130]    [Pg.130]    [Pg.51]    [Pg.328]    [Pg.467]    [Pg.1462]    [Pg.1506]    [Pg.247]    [Pg.68]    [Pg.76]    [Pg.190]    [Pg.176]    [Pg.298]    [Pg.84]    [Pg.167]    [Pg.172]    [Pg.383]    [Pg.500]    [Pg.501]    [Pg.501]    [Pg.502]    [Pg.502]    [Pg.503]    [Pg.504]    [Pg.504]    [Pg.513]    [Pg.97]    [Pg.181]    [Pg.132]    [Pg.543]    [Pg.9]    [Pg.259]   
See also in sourсe #XX -- [ Pg.123 ]




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