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{Ru2(μ-η2-OC(C6H5)O)(CO)4(μ-((CH3)2CHO)2PN(C2H5)P(OCH(CH3)2)2)2}{SbF6} is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

152018-33-2

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152018-33-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 152018-33-2 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,5,2,0,1 and 8 respectively; the second part has 2 digits, 3 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 152018-33:
(8*1)+(7*5)+(6*2)+(5*0)+(4*1)+(3*8)+(2*3)+(1*3)=92
92 % 10 = 2
So 152018-33-2 is a valid CAS Registry Number.

152018-33-2Upstream product

152018-33-2Downstream Products

152018-33-2Relevant academic research and scientific papers

Oxidation of Diphosphazane-bridged Derivatives of Diruthenium Nonacarbonyl by Silver(I) Salts in Protic Solvents: Synthesis, Structural Characterization and Protonation of the Adduct 2-OC(O)>(CO)42> (R = Me or Pri) involving a Novel Mode of Co-ordin...

Field, John S.,Haines, Raymond J.,Sundermeyer, Joerg,Woollam, Stephen F.

, p. 2735 - 2748 (1993)

Treatment of 2> (R = Me or Pri) with AgSbF6 in methanol, ethanol or tetrahydrofuran-water resulted in the formation of the solvento species 2>2 which is isolable for R' = H but which spontaneously deprotonates to the alkoxycarbonyl-bridged derivative 2-OC(OR')>(CO)42>SbF6 for R' = Me or Et.The aqua species 2>2 was readily deprotonated in consecutive steps by appropriate bases to afford respectively the hydroxycarbonyl-bridged species 2-OC(OH)>(CO)42>SbF6 and the adduct 2-OC(O)>(CO)42> in which the carbon dioxide molecule adopts a novel bridging co-ordination mode; this deprotonation is reversible and treatment of the latter with HBF4*OEt2 leads to stepwise regeneration of the aqua species.The co-ordinated water molecule in iO)2PN(Et)P(OPri)2>2>2 was readily displaced by acids HA derived from conjugate bases with potential co-ordinating properties such as thiolate ions R''S(1-) (R'' = H or Ph) or carboxylate ions R'''CO2(1-) (R''' = H, Me, Ph or CF3), to produce monocationic pentacarbonyl species of the type iO)2PN(Et)P(OPri)2>2>SbF6; detection of an intermediate, presumably iO)2PN(Et)P(OPri)2>2>2, was possible for HA = HCO2H and MeCO2H.The sulfido derivatives iO)2PN(Et)P(OPri)2>2>SbF6 (R'' = H or Ph) rapidly decarbonylate in solution to afford the tetracarbonyl products iO)2PN(Et)P(OPri)2>2>SbF6 in which the sulfido group bridges the two ruthenium atoms.On the other hand the carboxylato derivatives (CO)5iO)2PN(Et)P(OPri)2>2>SbF6 (R''' = H, Me, Ph or CF3) are stable to decarbonylation in solution at room or elevated temperatures but can be decarbonylated to the carboxylato-bridged products 2-OC(R''')O>(CO)4iO)2PN(Et)P(OPri)2>2>SbF6 by irradiation with ultraviolet light.The water molecule in iO)2PN(Et)P(OPri)2>2>2 was also readily displaced by the conjugate bases of the above acids HA, but in contrast to that observed for the carboxylic acids R'''CO2H (R''' = H, Me or Ph), reaction of the aqua species with the corresponding carboxylate ions R'''CO2(1-) led to direct formation of the carboxylato-bridged species 2-OC(R''')O>(CO)4iO)2PN(Et)P(OPri)2>2>SbF6.Possible mechanisms for the formation of the various products are discussed as are the structures of iO)2PN(Et)P(OPri)2>2>2*OCMe2, 2-OC(OEt)>(CO)42>SbF6, 2-OC(Me)O>(CO)4iO)2PN(Et)P(OPri)2>2>PF6 and 2-OC(O)>(CO)4iO)2PN(Et)P(OPri)2>2>, established X-ray crystallographically.

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