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Cu((CH3)2NC5H3NC2H4N(CH3)C2H4NC5H3N(CH3)2)(CO)(1+)*B(C6F5)4(1-)=[Cu((CH3)2NC5H3NC2H4NCH3C2H4NC5H3N(CH3)2)(CO)]B(C6F5)4 is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

494191-11-6

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494191-11-6 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 494191-11-6 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 4,9,4,1,9 and 1 respectively; the second part has 2 digits, 1 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 494191-11:
(8*4)+(7*9)+(6*4)+(5*1)+(4*9)+(3*1)+(2*1)+(1*1)=166
166 % 10 = 6
So 494191-11-6 is a valid CAS Registry Number.

494191-11-6Downstream Products

494191-11-6Relevant academic research and scientific papers

Tuning copper-dioxygen reactivity and exogenous substrate oxidations via alterations in ligand electronics

Zhang, Christiana Xin,Liang, Hong-Chang,Kim, Eun-il,Shearer, Jason,Helton, Matthew E.,Kim, Eunsuk,Kaderli, Susan,Incarvito, Christopher D.,Zuberbuehler, Andreas D.,Rheingold, Arnold L.,Karlin, Kenneth D.

, p. 634 - 635 (2003)

Copper(I)-dioxygen adducts are important in biological and industrial processes. For the first time we explore the relationship between ligand electronics, CuI-O2 adduct formation and exogenous substrate reactivity. The copper(I) complexes [CuI(R-MePY2)]+ (1R, where R = Cl, H, MeO, Me2N) were prepared; where R-MePY2 are 4-pyridyl substituted bis[2-(2-pyridyl)ethyl]methylamine chelates. Both the redox potential of 1R (ranging from E 1/2 = -270 mV for 1Cl to -440 mV for 1MeN vs FeCp2/FeCp2+) and νCO of the CO adducts of 1R (ranging from 2093 cm-1 for 1Cl-CO to 2075 cm-1 for 1Me2N-CO) display modest but expected systematic shifts. Dioxygen readily reacts with 1H, 1MeO, and 1Me2N, forming the side-on peroxo-CuII2 complexes [{CuII(R-MePY2)}2(O2)]2+ (2R, also containing some bis-μ-oxo-CuIII2 isomer), but there is no reaction with 1Cl. Stopped-flow studies in dichloromethane show that the formation of 2Me2N from dioxygen and 1Me2N proceeds with a k = 8.2(6) × 104 M-2 s-1 (183 K, ?H- -20.3(6) KJ mol-1,?S=-219(3) J mol -1 K-1 Solutions of 2 R readily oxidize exogenous substrates (9,10- dihydroanthracene → N- methlaniline and formaldehyde, benzyl alcohol→ benzaldehyde, benzhydrol→ benzophenone, and methanol→ formaldehde), forming the bis -μ-hydroxo-Cu II2 complexes [{CuII(R-MePY2)(OH}2]) 2+(3R) Product yields increase as the R- group is made more electron-donating, and in some cases are quantitative with 2Me2N Pseudo-first-order rate constants for THF and methanol the strongest ligand donor (i.e., R=Me 2N). For THF oxidation to THF-OH a nearly 1500-fold increase in reaction rate is observed (kobs=2 (1)×10-5 S-1 for 2H to 3(1)× S-1 for 2Me2N), while methanol oxidation to formaldehyde exhibits an 2000- fold increase ( K obs= 5(1)×10-5 S-1 for 2H to 1(1)×10-1 S-1 for 2Me2N). Copyright

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