361267
cis-1,2-Cyclohexanediol
99%
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About This Item
Productos recomendados
Quality Level
assay
99%
mp
97-101 °C (lit.)
SMILES string
O[C@@H]1CCCC[C@@H]1O
InChI
1S/C6H12O2/c7-5-3-1-2-4-6(5)8/h5-8H,1-4H2/t5-,6+
InChI key
PFURGBBHAOXLIO-OLQVQODUSA-N
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General description
Core-shell-like silica nickel species nanoparticle catalyzed dehydrogenation of 1,2-cyclohexanediol to catechol is reported. Crystal structure of a Cr(V) complex with cis-1,2-cyclohexanediol is reported. Enzymatic oxidation of cis-1,2-cyclohexanediol by Gluconobacter oxydans (ATCC 621) is reported.
Storage Class
11 - Combustible Solids
wgk_germany
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
Eyeshields, Gloves, type N95 (US)
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Inorganic chemistry, 52(8), 4282-4292 (2013-03-28)
The stabilization of Cr(V) by biological 1,2-diolato ligands, including carbohydrates, glycoproteins, and sialic acid derivatives, is likely to play a crucial role in the genotoxicity of Cr(VI) and has also been implicated in the antidiabetic effect of Cr(III). Previously, such
Oxidation of trans-and cis-1, 2-cyclohexanediol by Gluconobacter oxydans.
Applied Microbiology and Biotechnology, 30(3), 257-263 (1989)
Dalton transactions (Cambridge, England : 2003), 44(3), 1023-1038 (2014-11-20)
A simple and convenient approach denoted as gel-deposition-precipitation (G-D-P) for the preparation of core-shell-like silica@nickel species nanoparticles was studied systematically. Core-shell-like silica@nickel species nanoparticles consisted of a Si-rich core and a Ni-rich shell. The G-D-P process included two steps: one
Organic letters, 11(15), 3242-3245 (2009-09-02)
The relative energies of cyclohexane-1,2-diols and chiral tetrapeptide (2 (Boc) or 3 (Moc)) complexes calculated using DFT indicate a thermodynamic preference for chiral recognition toward (1R,2R)(e,e)-alpha isomer. The barrier for stereoselective acyl transfer is identified as lower for trans-(1R,2R)-cyclohexane-1,2-diol, leading
Applied microbiology and biotechnology, 55(6), 721-726 (2001-08-30)
Benzene dioxygenase (BDO; EC 1.14.12.3) from Pseudomonas putida ML2 dihydroxylates benzene to produce cis-1,2-dihydroxy-cyclohexa-3,5-diene. As well as oxidising benzene and toluene, cell-free extracts of Escherichia coli JM109 expressing recombinant BDO oxidised cyclohexene, 1-methylcyclohexene and 3-methylcyclohexene. In an attempt to construct
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