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112022-70-5

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112022-70-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 112022-70-5 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,1,2,0,2 and 2 respectively; the second part has 2 digits, 7 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 112022-70:
(8*1)+(7*1)+(6*2)+(5*0)+(4*2)+(3*2)+(2*7)+(1*0)=55
55 % 10 = 5
So 112022-70-5 is a valid CAS Registry Number.

112022-70-5Downstream Products

112022-70-5Relevant articles and documents

Dioxygen-Copper Reactivity. Models for Hemocyanin: Reversible O2 and CO Binding to Structurally Characterized Dicopper(I) Complexes Containing Hydrocarbon-Linked Bisamine Units

Karlin, Kenneth D.,Haka, Michael S.,Cruse, Richard W.,Meyer, Gerald J.,Farooq, Amjad,et al.

, p. 1196 - 1207 (2007/10/02)

A chemical system is described that mimics to a significant extent a number of properties of the copper-containing dioxygen carrier hemocyanin (Hc), including the reversible binding of CO and O2 and major features of the UV-vis spectroscopy.A neutral dinucleating ligand, N4PY2, in which two tridentate PY2 units (PY2 = bisamine) are connected by a tetramethylenealkyl chain, forms tetracoordinate dicopper(I) complexes, 2+ (1) and 2+ (1a), as well as the pseudotricoordinate complex 2+ (2).Compounds 1 and 2 can be readily interconverted, indicating that 2 can bind carbon monoxide reversibly.Complexes 1a or 2, as ClO41- (i.e. 1a-(ClO4)2 or 2-(ClO4)2), PF6-, or BF4- salts (λmax 350nm (ε 3500 M-1 cm-1)), can be oxygenated at -80 deg C in dichloromethane to produce intensely brown-colored solutions of dioxygen complexes, 3, which are characterized by extremely strong and multiple electronic spectral absorptions (360 nm (ε 14000-18700 M-1 cm-1), 458(4500-6300), 550(1200)) in the visible region.The reaction of 2 (or 1a) with O2 is reversible, and the application of a vacuum to the dioxygen formed, 3, removes the bound O2 and regenerates the dicopper(I) complex, 2.This vacuum cycling can be followed spectrophotometrically over several cycles.In addition, saturating a -80 deg C solution of the dioxygen complex 3 with carbon monoxide (CO) results in the displacement of the dioxygen ligand with the formation of the dicopper(I) dicarbonyl complex, 1.This behavior lends further support to the existence of the reversible binding equilibrium, 2 + O2 ->/a) manometric measurements indicate that the stoichiometry of the reaction of 2 (and 1a) with dioxygen is Cu:O2 = 2:1, thus formulating 3 as 2+, and (b) other evidence (e.g. the presence of a d-d band; λmax 775 nm (ε 200 M-1 cm-1)) suggests that 3 possesses Cu(II) ions, 3 is best described as a peroxo-dicopper(II) complex.Crystallographic studies have been completed for both (ClO4)2 (1a-(ClO4)2) and (ClO4)2 (2-(ClO4)2).Compound 1a-(ClO4)2 (C36H46Cl2Cu2N8O8) crystallizes in the monoclinic space group A2/a, with Z = 4 and a = 13.755 (4) Angstroem, b = 20.071 (5) Angstroem, c = 18.017 (4) Angstroem, and β = 121.39 (2) deg.Complex 2-(ClO4)2 (C32H40Cl2Cu2N6O8) crystallizes in the monoclinic space group A2/a, with Z = 4, a = 19.437 (4) Angstroem, b = 10.162 (3) Angstroem, c = 23.231 (6) Angstroem, and β = 128.14 (2) deg. 1a-(ClO4)2 possesses well-separated (Cu...Cu = 7.449 Angstroem) equivalent Cu(I)-N4 moieties with pseudotetrahedral ligation to the three nitrogen atoms of the PY2 unit and the acetonitrile molecule.In addition to the PY2 coordination in 2-(ClO4)2, a weak Cu-O(ClO41-) interaction is observed; the bonding parameter

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