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Heteronuclear multiple bond correlation correlations

HMBC Heteronuclear multiple bond correlation, inverse CH correlation via long-range CH coupling, same format and information as described for ( C detected) CH COLOC but much more sensitive (therefore less time-consuming) because of H detection... [Pg.266]

Figure 7.14 Pulse sequence for the HMBCS (heteronuclear multiple-bond correlation, selective) experiment, which uses advantageously a 270° Gaussian pulse for exciting the carbonyl resonances. It is also called the semisoft inverse COLOC. (Reprinted from Mag. Reson. Chem. 29, H. Kessler et al., 527, copyright (1991), with permission from John Wiley and Sons Limited, Baffins Lane, Chichester, Sussex P019 lUD, England.)... Figure 7.14 Pulse sequence for the HMBCS (heteronuclear multiple-bond correlation, selective) experiment, which uses advantageously a 270° Gaussian pulse for exciting the carbonyl resonances. It is also called the semisoft inverse COLOC. (Reprinted from Mag. Reson. Chem. 29, H. Kessler et al., 527, copyright (1991), with permission from John Wiley and Sons Limited, Baffins Lane, Chichester, Sussex P019 lUD, England.)...
To be fair, we must point out that this type of experiment is extremely sensitive to the parameters chosen. Various pulse sequences are available, including the original COLOC (Correlation by means of Long range Coupling) as well as experiments variously referred to as HMBC (Heteronuclear Multiple-Bond Correlation) and HMQC (Heteronuclear Multiple-Quantum Correlation). Depending on the parameters chosen, it is often not possible to suppress correlations due to one-bond coupling ... [Pg.45]

W. Schoefberger, J. Schlagnitweit and N. Muller, Recent Developments in Heteronuclear Multiple-Bond Correlation Experiments, in Annual Reports on NMR Spectroscopy, G. A. Webb (ed.), Vol. 72, Academic Press, 2011, pp. 1-60. [Pg.351]

In the case of the 7-hydroxy-substituted compounds 44 (Scheme 2), 54 different derivatives were investigated by 13C NMR spectroscopy and, in some cases, also by 1SN NMR spectroscopy <1995JST(335)273>. With the help of proton-coupled 13C NMR spectra, semi-selective INEPT (insensitive nuclei enhanced by polarization transfer) experiments, and heteronuclear multiple bond correlation (HMBC) two-dimensional 2D-NMR spectra, all shifts could be unequivocally assigned. While the C-7 shifts did not allow the existing tautomeric situation to be determined, a clear decision could be made by H NMR spectroscopy in this respect. The 1SN NMR spectra revealed an equilibrium between the N(4)H and N(3)H tautomeric forms, which is fast on the NMR timescale. [Pg.675]

In order to assign the chemical shifts of the carbon atoms of the conjugated diene system of each CLA isomer, it was necessary to conduct INADEQUATE, HMBC (heteronuclear multiple bond correlation) and two-dimensional 1H-13C correlation spectroscopy (COSY) techniques on the carbon signals of the diene system of the ,Z-isomers. The results of these experiments for the CLA isomers are summarized in Table 13. [Pg.82]

HMBC Heteronuclear multiple-bond correlation spectroscopy To elucidate structure of organic molecules To establish long-range (i.e., multibond) heteronuclear coupling... [Pg.308]

Note. NMR analyses revealed that the major component of the tripeptide product synthesized from Bz-Arg-OEt and Gly-Asp-(NH2)2 was Bz-RGD(-NH2)-OH rather than Bz-RGD-(NH2)2- The primary amide group adjacent to the secondary carbon centre is hydrolysed during the reaction, whereas the primary amide adjacent to the primary carbon centre remains intact, as determined by heteronuclear multiple bond correlation. ... [Pg.168]

Heteronuclear multiple bond correlation (HMBC) [1, 2] is one of the most powerful NMR techniques and is now being widely used for structural analysis of complicated molecules. Since it detects long range... [Pg.175]

There are a number of techniques stemming from the basic two-dimensional technique, which for example allow correlation between carbon atoms and the protons attached to them and correlations of carbon atoms with protons one or two bonds removed from them, heteronuclear multiple bond correlation (HMBC). [Pg.162]

NMR experiments. Heteronuclear NMR experiments are represented by H C HSQC (Figure 2.1) and heteronuclear multiple bond correlation HMBC) (Figure 2.2)... [Pg.43]

FIGURE 2.2 heteronuclear multiple bond correlation spectrum of 8-methoxykaempferol... [Pg.45]

Hadden, C.E., Martin, G.E., and Krishnamurthy, V.V., Improved performance accordion heteronuclear multiple-bond correlation spectroscopy — IMPEACH-MBC, J. Magn. Reson., 140, 274, 1999. [Pg.122]

Product elucidation of trimethyloxonium tetrafluoroborate and methyl iodide reactions with [l,2,3]triazolo[4,5- -pyridazines (Schemes 1-3) using mainly 2-D heteronuclear multiple bond correlation (HMBC). NMR... [Pg.666]

Complete N NMR chemical shifts together with H- N coupling constants (referenced externally to NH4C1 in DMSO-1 6 DMSO - dimethyl sulfoxide) have been determined for toxoflavin 7 and fervenulin 8 in CDCI3 using pulsed field gradient heteronuclear multiple bond correlation (HMBC) techniques <2000H(52)811>, and are presented in Table 1. [Pg.1271]

Record the 2-D H-13C heteronuclear multiple bond correlation (HMBC) spectrum (Braun et al., 1998, pp. 489-492). [Pg.823]

The heteronuclear multiple bond correlation (HMBC) experiment correlates proton nuclei with carbon nuclei that are separated by more than one bond. In Fig. FI. 4.7 the 37CH and 27Ch couplings dominate. Major applications related to anthocyanins include the assignment of resonances of nonprotonated carbon nuclei of the... [Pg.831]


See other pages where Heteronuclear multiple bond correlation correlations is mentioned: [Pg.407]    [Pg.376]    [Pg.287]    [Pg.295]    [Pg.8]    [Pg.374]    [Pg.248]    [Pg.294]    [Pg.498]    [Pg.82]    [Pg.121]    [Pg.180]    [Pg.601]    [Pg.44]    [Pg.270]    [Pg.529]    [Pg.765]    [Pg.1223]    [Pg.601]    [Pg.103]    [Pg.107]    [Pg.245]   
See also in sourсe #XX -- [ Pg.299 ]




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Heteronuclear 2-bond correlation

Heteronuclear Multiple-Bond Correlation, Selective (HMBCS)

Heteronuclear correlations

Heteronuclear multiple bond correlation HMBC)

Heteronuclear multiple bond correlation HMBC) spectroscopy

Heteronuclear multiple bond correlation chemical shifts

Heteronuclear multiple bond correlation compounds

Heteronuclear multiple bond correlation constant-time experiments

Heteronuclear multiple bond correlation examples

Heteronuclear multiple bond correlation experiment

Heteronuclear multiple bond correlation experimental verification

Heteronuclear multiple bond correlation measurements

Heteronuclear multiple bond correlation method

Heteronuclear multiple bond correlation parameters

Heteronuclear multiple bond correlation principles

Heteronuclear multiple bond correlation pulse sequence

Heteronuclear multiple bond correlation spectra

Heteronuclear multiple bond correlation spectroscopy

Heteronuclear multiple-bond

Heteronuclear multiple-bond correlation

Heteronuclear multiple-bond correlation

Heteronuclear multiple-bond correlations proton detected

Heteronuclear single quantum multiple bond correlation

Multiple bond correlations

Multiple correlation

Multiple heteronuclear

Understanding the Heteronuclear Multiple-Bond Correlation (HMBC) Pulse Sequence

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