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The chemical compound [Rh2(CO)4(μ-p-FC6H4NNNC6H4F-p)2] is a rhodium-based complex with a unique structure. It consists of two rhodium atoms, each coordinated to four carbon monoxide (CO) ligands, and bridged by two p-fluorinated phenyl-azo-phenyl ligands. The presence of fluorine atoms in the phenyl rings and the azo group (-N=N-) in the middle of the phenyl rings contribute to the electronic properties and stability of the complex. [Rh2(CO)4(μ-p-FC6H4NNNC6H4F-p)2] is of interest in the field of organometallic chemistry, particularly for its potential applications in catalysis and as a model for understanding the behavior of similar complexes.

36085-75-3

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36085-75-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 36085-75-3 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 3,6,0,8 and 5 respectively; the second part has 2 digits, 7 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 36085-75:
(7*3)+(6*6)+(5*0)+(4*8)+(3*5)+(2*7)+(1*5)=123
123 % 10 = 3
So 36085-75-3 is a valid CAS Registry Number.

36085-75-3Relevant articles and documents

P-Substituent effects on the redox chemistry of the diaryltriazenido-bridged dirhodium complexes [Rh2(CO)4-n(PPh3)n-ui./F-XC 6H4NNNC6H4X′-/> 2] (n = 0-2)

Connelly, Neil G.,Davis, Paul R. G.,Harry, Emma E.,Klangsinsirikul, Phimphaka,Venter, Monika

, p. 2273 - 2277 (2000)

The complexes [Rh,(CO)4(n-p-XC6H4NNNC6H 4X′-OJ (X = X′ = H, Me, Et, OMe, CN, F, Cl or Br; X = H, X′ = OMe or NO2) were prepared in a two-step reaction involving the cleavage of [{Rh(μ-Cl)(CO)2}2] with the diaryItriazene p-XC6H4NNNHC6H4X′-p followed by the deprotonation of the resulting mononuclear triazene complex [RhCl(CO)2{N(C4H4X-))NNHC6H 4X'-/>}] with NEt3. Yields of the dimeric products were maximised by carefully controlling the reaction time for each step. Reaction of the tetracarbonyls with PPh3 gave the monoand di-substituted species [Rh2(CO)4(PPh3)(u-p-XC6H 4NNNC6H4X′->)2] (n = 1 or 2), the reaction times again depending on the substituents X and X′. Each binuclear complex undergoes at least one reversible one-electron oxidation reaction at a platinum electrode in CH2Cl2. In some cases, e.g. X = X' = OMe, as many as three oxidation waves are observed; for X = H, X′ = NO1, n = 1 or 2, well-defined reduction waves are apparent. The oxidation potential depends on the extent of carbonyl substitution (for each incremental increase in n the potential is decreased by ca. 300 mV) and on the triazenide ligand substituent such that E° for the first oxidation wave can be varied systematically over a range of 800 mV. There is a linear relationship between E for the first oxidation step and the Hammett parameter σp but a poorer correlation for the second oxidation process. The Royal Society of Chemistry 2000.

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