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1.
13C-NMR spectra of fluorinated molecules are difficult to observe under conventional broad-band proton decoupling. The large coupling constants involved make polarization transfer between fluorine and carbon, using INEPT or DEPT experiments very effective while broad band fluorine decoupling collapses the multiplet pattern.  相似文献   

2.
Chemical shifts δ(13C), δ(119Sn) and coupling constants J(119Sn13C) for alkynylstannanes of the type R4-nSn(CCR′)n (n = 1–4) are reported. The values of 1J(119Sn13C) and 2J(119SnC13C) depend upon the nature of the substituent R′. 1J(119Sn13C) in Sn(CCCH3)4 is 1168 Hz, much larger than a value predicted in the literature of ca. 700 Hz. The comparison of δ(119Sn) for (CH3)2Sn(CCR′)2 and 1,1,4,4-tetramethyl-1-stannacyclohexadi-2,5-ene suggests that the δ(119Sn) of alkynylstannanes are determined only to a small extent by the diamagnetic anisotropic effect of the CC-triple bond.  相似文献   

3.
The results of proton and carbon magnetic resonance studies on pleiadiene (1) are reported. Data are discussed with respect to the structure of 1. Proton resonance studies indicate for 1 a rather planar configuration. Bonding phenomena in the two six-membered rings are only small affected by the 1,8 bridging of the naphthalene. As nonalternant 14 π-electron system 1 shows a carbon-13 spectrum typical for such compounds. The carbon-13 chemical shifts are discussed in comparison to related hydrocarbons.  相似文献   

4.
29Si, 13C and 1H NMR spectra are reported for the series of linear permethylpolysilanes Me(SiMe2)nMe where n = 1 to 6, for the cyclic permethylpolysilanes (Me2Si)n where n = 5 to 8, and for a few related compounds. For linear polysilanes the 29Si and 13C chemical shifts can be accurately calculated from simple additivity relationships based on the number of silicon atoms in α, β, γ and δ positions. Adjacent (α) silicon atoms lead to upfield shifts in the 29Si and 13C resonances, whereas more remote silicon atoms lead to downfield shifts. The 29Si chemical shifts of the polysilane chains are linearly related to the 13C shifts of the carbon atoms attached to the silicon. The 29Si and 13C resonances of the cyclic silanes deviate from this relationship. Ring current effects arising from σ delocalization are suggested as an explanation for the deviations. Proton-coupled 29Si NMR spectra are reported for Me3SiSiMe3 and for (Me2Si)n, n = 5 to 7.  相似文献   

5.
Fourier 13C and proton NMR spectra of cyanopropyne partially oriented by a nematic phase have been recorded and interpreted. It is shown that more accurate measurements are obtained much more rapidly by observing 13C satellites by Fourier PMR than by direct observation of the 13C spectrum. The geometry has been extracted from direct couplings; a small but systematic discrepancy with microwave spectroscopy is observed for the carboncarbon bond lengths.  相似文献   

6.
13C-nmr spectral assignments for asperdiol are made with the aid of model compounds and T1 relaxation behavior. Overall isotropic tumbling was inferred from the latter providing a supplemental means of multiplicity determination. Utilization of the T1 relaxation times as an assignment criterion for select resonances in asperdiol is also described.  相似文献   

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9.
The 13C NMR chemical shifts of eight methoxy-xanthones are reported. Methoxy substituent effects depending on substituent position as well as on shielded ring carbon position have been evaluated. Methoxy substituent increments for xanthones are proposed.  相似文献   

10.
13CNMR spectra of eight pterocarpans are reported Assignments are based on multiplicities and second-order features in off-resonance decoupled spectra and on chemical shifts in model compounds. Comparison of the degree of long-range (C, H) coupling in 1H-coupled spectra is found useful  相似文献   

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13.
Lech Stefaniak 《Tetrahedron》1976,32(9):1065-1067
14N NMR is shown to be an efficient method of investigation of the tautomeric equilibria in hydroxy-and related substituted pyridines. Large relative 14N chemical shifts within tautomeric pairs estimated from N-Me and O-Me derivatives make possible quantitative determinations of the equilibria. Qualitative conclusions may be drawn from 14N line widths as well as from 13C and proton chemical shifts.  相似文献   

14.
[4-13C]- Azulene and [4-13C]-4-methylazulene have been synthesized. The 13C13C spin coupling constants have been measured and interpreted in terms of πMO theory.  相似文献   

15.
The stereochemistry of several 2-R-1,3,6,2-trioxaphosphocanes (R = Cl, OCH3, CH3, N(CH3)3 has been investigated by 1H, 13C and 31P n m r spectroscopy.  相似文献   

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17.
1H, 13C and 29Si NMR data for the compounds (CH3)xSi(CH2CHCH2)4-x are reported. The 1H resonances from the π system are indicative of the electron-supplying inductive effect (+I) of the (CH3SiCH2, moiety but the corresponding 13Cπ chemical shifts seem to be influenced by a sterically induced polarization of the C-H bonds. The 13CAll, 13CMe and 29Si chemical shift data reveal an important neighbour anisotropy contribution originating from the π system. Ultraviolet study of the compounds mentioned above gives indication of a σ—π conjugation in accordance with PES and ab initio results [1—5]. The trend observed in the various coupling constants is too small to be Interpreted.  相似文献   

18.
1H, 13C and 29Si NMR spectra of the allylchlorosilanes (CH2CH-CH2-)xSiCl4?x and of triallylbromosilane have been analysed. Results are discussed in terms of inductive and steric effects and of contributions of diamagnetic anisotropy. There is no conclusive evidence for (p-d)π conjugation.  相似文献   

19.
The 1H- and 13C-NMR spectral parameters of N-vinyltetrazoles have been analyzed. It has been found that rotational isomerism is inherent to 1- and 2-vinyltetrazoles. A quantitative estimate of the ratio of rotational isomers has been made. In the case of 1-vinyltetrazoles, introduction of a substituent to the 5-position in the tetrazole ring stabilizes the trans-orientation of the vinyl group relative to the substituent, while in the case of 2-vinyltetrazoles the presence of a substituent in the 5-position of the ring essentially does not affect the conformer population.Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 12, pp. 1662–1667, December, 1989.  相似文献   

20.
The nuclear spin coupling constants1J(183W13C) and in some cases 2J(183W13C) and 3J(183W13C) are determined for 10 tungsten carbene and 9 tungsten carbyne complexes. 1J is of analytical importance, being characteristically greater for WC than for WC bonds. This is due to different hybridisation at the carbon atom, and provides information about bond angles and polarities of WC and WCR units.Substituents R and R' in (CO)5WCRR' and X(CO)4WCR as well as the halogens X lead to minor changes in 1J. These changes are comparable to those of 1J(13C1H) in correspondingly substituted methanes. Unexpectedly 1J in_ creases with X = Cl, Br, I. 2J(183W13C) though being much smaller than 1J reflects different hydridisation at the β carbon atom.  相似文献   

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