Results 31 to 40 of about 26,230 (252)
In the title compound, C41H41N3O9·2.25H2O, the cyclohexanol ring adopts a chair conformation. The cyclohexanol ring makes dihedral angles of 87.89 (7) and 75.53 (8)° with the mean planes of the trimethoxyphenyl rings and dihedral angles of 84.18 (8), 85 ...
Era Dravida Thendral +4 more
doaj +1 more source
The Six Isomers of the Cyclohexanol Dimer: A Delicate Test for Dispersion Models.
The cyclohexanol homodimer is a delicate test model of the role of dispersion forces in intermolecular association. While phenol produces a single dimer, suppression of π interactions and larger conformational flexibility in cyclohexanol results in ...
M. Juanes +5 more
semanticscholar +1 more source
We report herein a study on the glycosylation of cyclohexanol with four D-glucosamine-based peracetylated glycosyl chlorides bearing different substituents at C-2 and three glycosylation promoters, silver carbonate, silver triflate and mercury II ...
Lucas L. Franco +4 more
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Oxidation of Cyclohexane to Cylohexanol and Cyclohexanone Over H4[a-SiW12O40]/TiO2 Catalyst
Oxidation of cyclohexane to cyclohexanol and cyclohexanone was carried out using H4[a-SiW12O40]/TiO2 as catalyst. In the first experiment, catalyst H4[a-SiW12O40]/TiO2 was synthesized and characterized using FTIR spectroscopy and X-Ray analysis.
Aldes Lesbani +4 more
doaj +1 more source
The industrial production of cyclohexanone from cyclohexanol would benefit from a selective oxidation catalyst. Herein, Cu doping of MgCr2O4 supports for gold nanoparticles active in gas-phase oxidation of cyclohexanol was investigated.
Yanan Gao, E. Hensen
semanticscholar +1 more source
IR spectra and structural-dynamic anharmonic models of cyclohexanol [PDF]
Background and Objectives: The construction of quantum mechanical structural-dynamic models of molecular systems has become a necessary part of studies of the structure, optical spectra and properties of matter.
Babkov, Lev Mikhailovich
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Crystal structure of 2,4,6-tris(cyclohexyloxy)-1,3,5-triazine
The title compound, C21H33N3O3, is a tri-substituted cyclohexyloxy triazine. In the crystal, the triazine rings form (C3i-PU) Piedfort units. The inter-centroid distance of the π–π interaction involving the triazine rings is 3.3914 (10) Å. In the crystal,
Ravish Sankolli +3 more
doaj +1 more source
Developing a new and efficient catalytic route for the production of alkanes by upgrading the aqueous phenolic biofuels still remains a challenge. Here, we designed and synthesized a bifunctional catalyst that uses natural montmorillonite (MMT) as ...
Xuerong Wang +11 more
doaj +1 more source
Epoxidation of cyclohexene with cyclohexyl hydroperoxide
Objectives. To investigate the regularities of the process of joint production of epoxycyclohexane, cyclohexanol, and cyclohexanone using the cyclohexene epoxidation reaction with cyclohexyl hydroperoxide in the presence of an ammonium paramolybdate ...
E. A. Kurganova +8 more
doaj +1 more source
Crystal Engineering of Reticular Materials for Gas‐ and Liquid‐Phase Hydrocarbon Separation
Crystal engineering enables systematic study of structure/function relationships as exemplified by pore engineering of reticular sorbents, including porous coordination networks and covalent organic frameworks. This review assesses such studies applied across the full scope of industrially relevant hydrocarbon separations to provide insight into how ...
Xia Li +2 more
wiley +1 more source

