Search results for "Cyclohexane"

showing 10 items of 295 documents

CCDC 2068700: Experimental Crystal Structure Determination

2021

Related Article: Manfredi Caruso, Massimo Cametti, Kari Rissanen, Javier Martí-Rujas|2021|New J.Chem.|45|12448|doi:10.1039/D1NJ02175C

Space GroupCrystallographycatena-((mu-NN'-(cyclohexane-14-diyl)bis{1-[4-(pyridin-3-yl)phenyl]methanimine})-bis(iodo)-zinc n-hexane solvate)Crystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 723128: Experimental Crystal Structure Determination

2009

Related Article: O.Fabelo, J.Pasan, L.Canadillas-Delgado, F.S.Delgado, F.Lloret, M.Julve, C.Ruiz-Perez|2009|Inorg.Chem.|48|6086|doi:10.1021/ic9004483

Space GroupCrystallographycatena-((mu~3~-11-Cyclohexanediacetato-OO'O''O''')-cobalt(ii))Crystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 179499: Experimental Crystal Structure Determination

2003

Related Article: E.Coronado, C.Gimenez-Saiz, J.M.Martinez-Agudo, A.Nuez, F.M.Romero, H.Stoeckli-Evans|2003|Polyhedron|22|2435|doi:10.1016/S0277-5387(03)00192-X

Space GroupCrystallographycatena-(hexakis(mu~2~-Cyano)-hexacyano-hexakis(trans-(1S2S)-cyclohexane-12-diamine)-di-iron(iii)-tri-nickel(ii) dihydrate)Crystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 201531: Experimental Crystal Structure Determination

2004

Related Article: E.Coronado, C.Gimenez-Saiz, J.M.Martinez-Agudo, A.Nuez, F.M.Romero, H.Stoeckli-Evans|2003|Polyhedron|22|2435|doi:10.1016/S0277-5387(03)00192-X

Space GroupCrystallographycatena-(tetrakis(mu2-cyano)-hexakis(trans-(1S2S)-cyclohexane-12-diamine)hexacyano-di-copper(ii)-iron(iii) diaqua-bis(trans-(1S2S)-cyclohexane-12-diamine)-copper(ii) hydrate)Crystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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ChemInform Abstract: UEBER ARSEN-HALTIGE HETEROCYCLEN 3. MITT. KRISTALLSTRUKTUR VON 2,6-DIMETHYL-4,4-DIPHENYL-1,4-OXOARSENANIUMBROMID-MONOHYDRAT

1975

Abstract The crystal structure of the title compound has been determined from single crystal X-ray data and refined to a conventional R factor of 0.046. The coordination of the As atom is tetrahedral with a mean As—C distance of 1.92 A. The six-membered heterocycle has chair conformation with two equatorial methyl and one equatorial and one axial phenyl substituent. The transannular 1,4-As⋯O distance is 3.11 A, interactions are discussed. The connection of the structure is more van der Waals than ionic type. Some unspecific gaps are statistically occupied by one molecule of crystal water.

StereochemistryCyclohexane conformationSubstituentIonic bondingGeneral MedicineCrystal structurechemistry.chemical_compoundsymbols.namesakeCrystallographychemistrysymbolsMoleculevan der Waals forceSingle crystalChemischer Informationsdienst
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Selenium Imides:  77Se NMR Investigations of the SeCl2−tBuNH2 Reaction and X-ray Structures of Se3(NtBu)3, tBuNSe(μ-NtBu)2SO2, and tBuNSe(μ-NtBu)2SeO

2000

The reaction of SeCl2 with tert-butylamine in various molar ratios in THF at −78 °C has been investigated by 77Se NMR spectroscopy. In addition to the known Se−N heterocycles Se6(NtBu)2 (1) and Se9(NtBu)6 (2), the acyclic imidoselenium(II) dichlorides ClSe[N(tBu)Se]nCl (4, n = 1; 5, n = 2) and two new cyclic selenium imides [Se3(NtBu)2]n (3, n = 1 or 2) and Se3(NtBu)3 (6) have been isolated and identified. An X-ray analysis shows that 6 is a six-membered ring in a chair conformation with |d(Se−N)| = 1.833 A. Crystal data:  6, trigonal, P3c1, a = 9.8660(3) A, c = 20.8427(7) A, V = 1757.0(1) A3, Z = 6. The 1H, 13C, and 77Se NMR data for 1−6 are reported, and some reassignments of earlier lite…

StereochemistryCyclohexane conformationX-raychemistry.chemical_elementNuclear magnetic resonance spectroscopyRing (chemistry)TolueneDecompositionInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryCrystal dataPhysical and Theoretical ChemistrySeleniumInorganic Chemistry
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Über polygermane

1985

Abstract [(Cl 3 CCOO)Ph 2 Ge] 2 reacts with wet acetone to give Ph 8 Ge 4 O 2 , and with dry H 2 S to give Ph 8 Ge 4 S 2 . With Na 2 S or NaHSe, Ph 4 Ge 2 Cl 2 yields Ph 8 Ge 4 S 2 and Ph 8 Ge 4 Se 2 , respectively. Only Ph 6 Ge 3 S 2 or Ph 6 Ge 3 Se 2 , but no Ph 6 Ge 3 O 2 , can be obtained from a mixture of Ph 4 Ge 2 Cl 2 , Ph 2 GeCl 2 and Na 2 S or NaHSe. The mass spectra show a high stability of the cations Ph 6 Ge 3 S 2 + and Ph 6 Ge 3 Se 2 + . The 13 C NMR phenyl signals for C( ipso ) shift to high field in the series O, S, Se and 6-membered, 5-membered rings. The crystal structures of Ph 8 Ge 4 O 2 ( R = 0.031) and Ph 6 Ge 3 S 2 ( R = 0.036) have been determined. The 6-membered ring…

StereochemistryOrganic ChemistryCyclohexane conformationCrystal structureNuclear magnetic resonance spectroscopyCarbon-13 NMRBiochemistryInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryX-ray crystallographyMaterials ChemistryAcetoneMass spectrumMoleculePhysical and Theoretical ChemistryJournal of Organometallic Chemistry
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(E)-2-{[1-(3,11-Dimethyl-4-methylene-10-oxo-1-phenyl-4,5,10,11-tetrahydro-1H-benzo[b]pyrazolo[3,4-f][1,5]diazocin-5-yl)ethylidene]amino}-N-methyl-N-(…

2013

The central eight-membered ring of the title compound, C40H36N8O2, deviates from the ideal boat conformation because the bond between the exo-ethylene group and the adjacent N atom is twisted by 60.0 (4)° due to steric hindrance. Its adjacent benzene and pyrazole rings are oriented almost perpendicular to each other, making a dihedral angle of 85.8 (3)°. In the crystal, the molecules are linked by C(ar)—H...O hydrogen bonds, generating a three-dimensional network.

Steric effectsCrystallographyHydrogen bondCyclohexane conformationGeneral ChemistryDihedral anglePyrazoleCondensed Matter PhysicsRing (chemistry)Settore CHIM/08 - Chimica FarmaceuticaOrganic PapersMedicinal chemistrychemistry.chemical_compoundchemistryDiazocine derivative X-ray structureQD901-999General Materials ScienceDiazoEne reactionActa Crystallographica Section E Structure Reports Online
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Modular P-Chirogenic Aminophosphane-Phosphinite Ligands for Rh-Catalyzed Asymmetric Hydrogenation: A New Model for Prediction of Enantioselectivity

2007

An original series of P-chirogenic aminophosphane-phosphinite (AMPP) ligands has been synthesized from (+)- or(–)-ephedrine in 23 to 61 % overall yields by a versatile three-step methodology. The AMPP ligands, bearing either one or two P-chirogenic centers, were used in the form of rhodium complexes for the catalyzed hydrogenation of α-acetamidocinnamate as a test reaction. Notably, even with AMPP ligands all derived from (+)-ephedrine, variation of the substituent on a P-center allowed the phenylalanine derivatives to be obtained in either (S) or (R) absolute configurations, with ee values ranging from 99 % (S) to 88 % (R). The asymmetric induction was analyzed with the aid of X-ray struct…

Steric effectsPhosphiniteStereochemistryLigandOrganic ChemistryAsymmetric hydrogenationCyclohexane conformationSubstituentchemistry.chemical_elementAsymmetric inductionRhodiumchemistry.chemical_compoundchemistryPhysical and Theoretical ChemistryEuropean Journal of Organic Chemistry
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Benzoannulated quinone-type electron acceptors: evolution of the molecular and electronic structures upon reduction

1998

Abstract The molecular and electronic structures of DCNQI and its π-extended derivatives benzo-DCNQI and DCAQI have been investigated using ab initio 6-31G ∗ calculations. The steric hindrance introduced by lateral benzoannulation determines the loss of planarity of the DCNQI moiety for DCAQI. The most stable conformation of DCAQI corresponds to a butterfly-type structure, in which the DCNQI ring adopts a boat conformation and the lateral benzene rings remain planar. This structure lies 2.75 kcal mol −1 below the fully planar conformation. MP2/6-31G ∗ calculations including full geometry optimization confirm the greater stability of the butterfly structure. The geometries of the anions and …

Steric effectschemistry.chemical_classificationChemistryCyclohexane conformationAb initioElectron acceptorCondensed Matter PhysicsRing (chemistry)BiochemistryPlanarity testingCrystallographyAb initio quantum chemistry methodsComputational chemistryMoietyPhysical and Theoretical ChemistryJournal of Molecular Structure: THEOCHEM
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