Search results for "Chemical shift"

showing 10 items of 205 documents

Synthesis, and Molecular Structure Investigations of a New s-Triazine Derivatives Incorporating Pyrazole/Piperidine/Aniline Moieties

2021

In this work, we synthesized two new s-triazine incorporates pyrazole/piperidine/aniline moieties. Molecular structure investigations in the light of X-ray crystallography combined with Hirshfeld and DFT calculations were presented. Intermolecular interactions controlling the molecular packing of 4-(3,5-dimethyl-1H-pyrazol-1-yl)-N-phenyl-6-(piperidin-1-yl)-1,3,5-triazin-2-amine; 5a and N-(4-bromophenyl)-4-(3,5-dimethyl-1H-pyrazol-1-yl)-6-(piperidin-1-yl)-1,3,5-triazin-2-amine; 5b were analyzed using Hirshfeld calculations. The most dominant interactions are the H...H, N...H and H...C contacts in both compounds. The N...H and H...C interactions in 5a and the N...H, Br...H and H...H interacti…

General Chemical EngineeringPyrazoleInorganic Chemistrychemistry.chemical_compoundsymbols.namesakeAnilines-triazinehydrazino-s-triazineComputational chemistry<i>s</i>-triazine; pyrazole; hydrazino-<i>s</i>-triazine; Hirshfeld calculationsMoleculeHirshfeld calculationsGeneral Materials Scienceheterosykliset yhdisteetDebyeTriazinekemiallinen synteesiCrystallography<i>s</i>-triazineChemical shiftIntermolecular forceCondensed Matter Physicspyrazolechemistryhydrazino-<i>s</i>-triazineQD901-999symbolsPiperidineCrystals
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ChemInform Abstract: Mixed Group 14-Group 14 Bonds. Part 7. An Incremental System for Estimating 13C NMR Chemical Shifts of Arylated Group 14 Compoun…

2010

Group (periodic table)ChemistryChemical shiftOrganic chemistryMixed groupGeneral MedicineCarbon-13 NMRChemInform
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3 He NMR studies on helium-pyrrole, helium-indole, and helium-carbazole systems: a new tool for following chemistry of heterocyclic compounds

2014

The 3He nuclear magnetic shieldings were calculated for free helium atom and He–pyrrole, He–indole, and He–carbazole complexes. Several levels of theory, including Hartree–Fock (HF), Second-order Moller-Plesset Perturbation Theory (MP2), and Density Functional Theory (DFT) (VSXC, M062X, APFD, BHandHLYP, and mPW1PW91), combined with polarization-consistent pcS-2 and aug-pcS-2 basis sets were employed. Gauge-including atomic orbital (GIAO) calculated 3He nuclear magnetic shieldings reproduced accurately previously reported theoretical values for helium gas. 3He nuclear magnetic shieldings and energy changes as result of single helium atom approaching to the five-membered ring of pyrrole, indo…

Helium atomCarbazoleChemical shiftchemistry.chemical_elementGeneral ChemistryRing (chemistry)chemistry.chemical_compoundchemistryAtomic orbitalComputational chemistryPhysics::Atomic and Molecular ClustersMoleculePhysical chemistryGeneral Materials ScienceDensity functional theoryPhysics::Atomic PhysicsHeliumMagnetic Resonance in Chemistry
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13C NMR, 1H NMR and IR spectra of a series of monochloroesters of aliphatic short chain carboxylic acids

1981

Abstract 13 C chemical shifts for 14 isomeric monochloroesters of aliphatic carboxylic acids from propanoic acid to hexanoic acid have been determined. Comparisons are made with the literature values for methyl monochloro-octanoate isomers. Substituent effects for all positions are given. Characteristic IR absorption bands are presented and comparisons are made with regard to the isomeric structure. Connections are suggested between observed trends in IR absorption frequencies and some “abnormal” chlorine substituent effects on 13 C chemical shifts. 1 H NMR spectra of these compounds are considered.

Hexanoic acidChemical shiftOrganic ChemistrySubstituentInfrared spectroscopyCarbon-13 NMRBiochemistryMedicinal chemistrySpectral linechemistry.chemical_compoundPropanoic acidchemistryDrug DiscoveryProton NMROrganic chemistryTetrahedron
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Prediction of the carbon-13 NMR chemical shifts of polysubstituted benzenes with homogeneous substituents

1991

A new incremental scheme for the calculation of the 13C NMR chemical shifts in polysubstituted benzenes with homogeneous substituents was derived and applied to spectral prediction for C6XnH6−n where XCH3, C2H5, i-C3H7, CF3, F, Cl, Br, COOH. Owing to the use of only two-particle increments the procedure is simple enough to be carried out on hand calculators, and gives complete agreement with experimental values within a few tenths of a ppm in all cases compared (76 compounds). The 13C NMR chemical shift was predicted for hexaethylbenzene with a good fit to the experiment value, and also for 20 unmeasured compounds. The present scheme can be used as an algorithm in structure-searching progra…

HomogeneousChemistryComputational chemistryChemical shiftOrganic chemistryGeneral Materials ScienceComplete AgreementGeneral ChemistryCarbon-13 NMRMagnetic Resonance in Chemistry
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New Carbaalanes − (AlMe)8(CCH2Me)5(C≡C−Me) and the THF Adduct (AlMe)8(CCH2Me)5H·2THF

2001

The hydroalumination of Me2Al−C≡C−Me with a large excess of Me2AlH afforded the arachno-carbaalane (AlMe)8(CCH2Me)5H (4) by the release of AlMe3. 4 is almost insoluble in noncoordinating solvents and could not be purified by recrystallization. On an attempt to recrystallize 4 from a THF solution, the adduct (AlMe)8(CCH2Me)5H·2THF (5) was isolated as the first stable ether adduct of a carbaalane. Crystal structure determination revealed a cube of eight aluminium atoms, five faces of which are bridged by C−CH2Me groups. The sixth face is µ2-bridged by a hydrogen atom, and two opposite aluminium atoms of this face are coordinated by one THF ligand each. When the excess of dimethylaluminium hyd…

HydrideChemical shiftchemistry.chemical_elementEtherNuclear magnetic resonance spectroscopyHydrogen atomCrystal structurePhotochemistryMedicinal chemistryAdductInorganic Chemistrychemistry.chemical_compoundchemistryAluminiumEuropean Journal of Inorganic Chemistry
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NMR crystallography of 2-Acylamino-6-[1H]pyridones: solid state NMR, GIPAW computational, and single crystal X-ray diffraction studies

2011

Abstract 2-Acylamino-6-[1H]-pyridones [acyl = RCO, where R = methyl (1), ethyl (2), iso-propyl (3), tert-butyl (4), and 1-adamantyl (5)] have been synthesized and characterized by NMR spectroscopy. From three congeners, 2, 3 and 5, also single crystal X-ray structures have been solved. For these derivatives GIPAW calculations acts as a “bridge” between solid-state NMR data and calculated chemical shifts based on X-ray determined geometry. In crystals all three compounds exist as pyridone tautomers possessing similar six-membered ring structure stabilized by intramolecular C O⋯HN hydrogen bond. Theoretical GIPAW calculated and experimental 13C and 15N CPMAS NMR shifts are in excellent agreem…

Hydrogen bondCarbon-13 NMR satelliteChemistryChemical shiftOrganic ChemistryNuclear magnetic resonance spectroscopyNuclear magnetic resonance crystallographyTautomerAnalytical ChemistryInorganic ChemistryCrystallographySolid-state nuclear magnetic resonanceIntramolecular forceta116SpectroscopyJournal of Molecular Structure
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15N NMR: Substituent effect analysis inpara-andmeta-substituted phenylhydrazines

1994

15N NMR spectra of phenylhydrazine and of 14 para- and meta-substituted phenylhydrazines were measured at natural isotope abundance in DMSO-d6 solution. The substituent present exerts a larger influence on the chemical shift of the nitrogen atom directly bound to the aromatic ring (N-1) than on the second one (N-2), which shows an attenuated and inverted trend. The chemical shifts of N-1 and N-2 give a good cross correlation in both series of compounds if p-NO2 and m-F derivatives are excluded from the correlations of para- and meta-substituted phenylhydrazines, respectively. Moreover, N-1 SCS values show good linear correlations with Hammett substituent constants, with SCSs of directly bou…

HydrogenStereochemistryChemical shiftPhenylhydrazinesSubstituentchemistry.chemical_elementGeneral ChemistryRing (chemistry)Medicinal chemistryNMR spectra databasechemistry.chemical_compoundAnilinechemistryGeneral Materials SciencePhenylhydrazineMagnetic Resonance in Chemistry
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Über gemischte bindungen in der IV. Hauptgruppe

1984

Abstract The reaction of Ph 3 PbLi with Ph 3 SnCl or Ph 3 GeCl gives Ph 3 PbSnPh 3 and Ph 2 PbGePh 3 , respectively; there is no reaction with Ph 3 SiCl. Ph 3 SiLi reacts with Ph 3 PbCl to form a regular 1 : 1 Pb 2 Ph 6 · Si 2 Ph 6 phase. The compounds have been investigated by mass, NMR and vibrational spectra: 207 Pb NMR chemical shifts with respect to PbMe 2 −79.8 (Pb 2 Ph 6 ), −256.5 (Ph 3 PbSnPh 3 ), −271.5 ppm (Ph 3 PbGePh 3 ); stretching vibrations 112 (PbPb), 125 (PbSn), 138 cm −1 (PbGe). The crystal structures have been determined and refined to R = 0.061 (Ph 3 PbSnPh 3 , −40°C), 0.053 (Ph 3 PbGePh 3 , −50°C), 0.068 (Pb 2 Ph 6 · Si 2 Ph 6 , 20°C); bond lengths 285 (PbPb),…

Inorganic ChemistryBond lengthStereochemistryChemistryChemical shiftPhase (matter)Organic ChemistryMaterials ChemistryPhysical chemistryCrystal structurePhysical and Theoretical ChemistryBiochemistryVibrational spectraJournal of Organometallic Chemistry
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GIAO/DFT 13C NMR Chemical Shifts of 1,3,4-Thiadiazoles

2007

1 H, 13 C and 15 N NMR spectra of 2-acetylamino-1,3,4-thiadiazole and its 5-substituted derivatives have been measured and assigned based on reference data, as well as homo- and heteronuclear 2 D NMR experiments. In addition, the GIAO/DFT approach at the B3LYP level of theory using the 6-311G basis set was used to calculate the 13 C NMR chemical shifts. Although this method gives reliable results for 2-arylhydrazones of 1,3-diphenylpropanetrione, 2-phenacylpyridines, (Z)-2-(2-hydroxy-2-phenylvinyl)pyridines, 4-fluoroanilines, (1Z,3Z)-1,4-di(pyridin-2-yl)buta-1,3-dienediols and their tautomeric forms, the calculated chemical shifts for the 1,3,4-thiadiazoles studied are less satisfactory. Pr…

Inorganic ChemistryNMR spectra databaseThiadiazolesHeteronuclear moleculeAb initio quantum chemistry methodsComputational chemistryChemistryChemical shiftOrganic ChemistryCarbon-13 NMRBiochemistryTautomerBasis setPhosphorus, Sulfur, and Silicon and the Related Elements
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