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5634-64-0

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5634-64-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 5634-64-0 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 5,6,3 and 4 respectively; the second part has 2 digits, 6 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 5634-64:
(6*5)+(5*6)+(4*3)+(3*4)+(2*6)+(1*4)=100
100 % 10 = 0
So 5634-64-0 is a valid CAS Registry Number.

5634-64-0Upstream product

5634-64-0Downstream Products

5634-64-0Relevant articles and documents

Acylated cyanoimido-complexes trans-[Mo(NCN){NCNC(O)R}(dppe)2]Cl and their reactions with electrophiles: Chemical, electrochemical and theoretical study

Alegria, Elisabete C.B.A,Guedes Da Silva, M. Fátima C.,Kuznetsov, Maxim L.,Cunha, Sónia M.P.R.M.,Martins, Luísa M.D.R.S.,Pombeiro, Armando J. L.

, p. 13876 - 13890 (2013/01/15)

Treatment of a dichloromethane solution of trans-[Mo(NCN){NCNC(O)R}(dppe) 2]Cl [R = Me (1a), Et (1b)] (dppe = Ph2PCH 2CH2PPh2) with HBF4, [Et 3O][BF4] or EtC(O)Cl gives trans-[Mo(NCN)Cl(dppe) 2]X [X = BF4 (2a) or Cl (2b)] and the corresponding acylcyanamides NCN(R′)C(O)Et (R′ = H, Et or C(O)Et). X-ray diffraction analysis of 2a (X = BF4) reveals a multiple-bond coordination of the cyanoimide ligand. Compounds 1 convert to the bis(cyanoimide) trans-[Mo(NCN)2(dppe)2] complex upon reaction with an excess of NaOMe (with formation of the respective ester). In an aprotic medium and at a Pt electrode, compounds 1 (R = Me, Et or Ph) undergo a cathodically induced isomerization. Full quantitative kinetic analysis of the voltammetric behaviour is presented and allows the determination of the first-order rate constants and the equilibrium constant of the trans to cis isomerization reaction. The mechanisms of electrophilic addition (protonation) to complexes 1 and the precursor trans-[Mo(NCN)2(dppe)2], as well as the electronic structures, nature of the coordination bonds and electrochemical behaviour of these species are investigated in detail by theoretical methods which indicate that the most probable sites of the proton attack are the oxygen atom of the acyl group and the terminal nitrogen atom, respectively.

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