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[FeCl((C5H2N(C6H2(CH3)3))3(C5H2N(C6H2(C(CH3)3)(O)(C(CH3)2)C6H2(C(CH3)3)CO2CH3)))] is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

331716-56-4

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331716-56-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 331716-56-4 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 3,3,1,7,1 and 6 respectively; the second part has 2 digits, 5 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 331716-56:
(8*3)+(7*3)+(6*1)+(5*7)+(4*1)+(3*6)+(2*5)+(1*6)=124
124 % 10 = 4
So 331716-56-4 is a valid CAS Registry Number.

331716-56-4Downstream Products

331716-56-4Relevant academic research and scientific papers

Examination of the Magneto-Structural Effects of Hangman Groups on Ferric Porphyrins by EPR

Nehrkorn, Joscha,Bonke, Shannon A.,Aliabadi, Azar,Schwalbe, Matthias,Schnegg, Alexander

, p. 14228 - 14237 (2019)

Ferric hangman porphyrins are bioinspired models for haem hydroperoxidase enzymes featuring an acid/base group in close vicinity to the metal center, which results in improved catalytic activity for reactions requiring O-O bond activation. These functional biomimics are examined herein with a combination of EPR techniques to determine the effects of the hanging group on the electronics of the ferric center. These results are compared to those for ferric octaethylporphyrin chloride [Fe(OEP)Cl], tetramesitylporphyrin chloride [Fe(TMP)Cl], and the pentafluorophenyl derivative [Fe(TPFPP)Cl], which were also examined herein to study the electronic effects of various substituents. Frequency-domain Fourier-transform THz-EPR combined with field domain EPR in a broad frequency range from 9.5 to 629 GHz allowed the determination of zero-field splitting parameters, revealing minor rhombicity E/D and D values in a narrow range of 6.24(8) to 6.85(5) cm-1. Thus, the hangman porphyrins display D values in the expected range for ferric porphyrin chlorides, though D appears to be correlated with the Fe-Cl bond length. Extrapolating this trend to the ferric hangman porphyrin chlorides, for which no crystal structure has been reported, indicates a slightly elongated Fe-Cl bond length compared to the non-hangman equivalent.

Proton-coupled O-O activation on a redox platform bearing a hydrogen-bonding scaffold

Chang, Christopher J.,Chng, Leng Leng,Nocera, Daniel G.

, p. 1866 - 1876 (2007/10/03)

Porphyrin architectures bearing a hydrogen-bonding scaffold have been synthesized. The H-bond pendant allows proton-coupled electron transfer (PCET) to be utilized as a vehicle for effecting catalytic O-O bond activation chemistry. Suzuki cross-coupling reactions provide a modular synthetic strategy for the attachment of porphyrins to a rigid xanthene or dibenzofuran pillar bearing the H-bond pendant. The resulting HPX (hanging porphyrin xanthene) and HPD (hanging porphyrin dibenzofuran) systems permit both the orientation and acid-base properties of the hanging H-bonding group to be controlled. Comparative reactivity studies for the catalase-like disproportionation of hydrogen peroxide and the epoxidation of olefins by the HPX and HPD platforms with acid and ester hanging groups reveal that the introduction of a proton-transfer network, properly oriented to a redox-active platform, can orchestrate catalytic O-O bond activation. For the catalase and epoxidation reaction types, a marked reactivity enhancement is observed for the xanthene-bridged platform appended with a pendant carboxylic acid group, establishing that this approach can yield superior catalysts to analogues that do not control both proton and electron inventories.

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