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52595-94-5

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52595-94-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 52595-94-5 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 5,2,5,9 and 5 respectively; the second part has 2 digits, 9 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 52595-94:
(7*5)+(6*2)+(5*5)+(4*9)+(3*5)+(2*9)+(1*4)=145
145 % 10 = 5
So 52595-94-5 is a valid CAS Registry Number.

52595-94-5Relevant articles and documents

The microwave synthesis of platinum(II) phosphine complexes

Dopke, Nancy Carter,Oemke, Holly E.

, p. 638 - 640 (2011)

The microwave synthesis of a series of platinum(II) phosphine complexes is reported. The complexes dppePtCl2 (dppe = bis(diphenylphosphino) ethane), dpppPtCl2 (dppp = bis(diphenylphosphino)propane), dppmPtCl2 (dppm = bis(diphenylphosphino)methane) and cis-(Ph 3P)2PtCl2 are synthesized from the reaction of potassium tetrachloroplatinate(II) and the phosphine. The isolated yields are 65% or better.

Simple, High Yield Synthesis of Heterobimetallic Complexes of Ph2PCH2PPh2 (dppm) with Platinum, Mercury, and Silver

McEwan, David M.,Pringle, Paul G.,Shaw, Bernard L.

, p. 1240 - 1241 (1982)

Treatment of the readily available salts 2X (dppm = Ph2PCH2PPh2) with (i) Hg(CCR)2 or (ii) Hg(OAc) + RCCH or (iii) Hg(CN)2 gives virtually quantitative yields of Y2Pt(μ-dppm)2HgX2 (Y = CCR or CN, R = Ph, p-tolyl, Me, or Prn, X = Cl)

BIMETALLIC SYSTEMS. PART 4. SYNTHESIS AND CHARACTERISATION OF MIXED COPPER(I)-, SILVER(I)-, OR GOLD(I)-PLATINUM(II) ACETYLIDE COMPLEXES CONTAINING BRIDGING Ph2PCH2PPh2

Cooper, Gary R.,Hutton, Alan T.,Langrick, Richard C.,McEwan, David M.,Pringle, Paul G.,Shaw, Bernard L.

, p. 855 - 862 (1984)

The bis(monodentate dppm)diacetylide complexes of type trans-CR)2(dppm-P)2> (dppm = Ph2PCH2PPh2; R = Ph, p-tolyl, Me, etc.) react with silver nitrate or silver hexafluorophosphate to give mixed platinum-silver salts of the type C)2Pt(μ-dppm)2Ag>X (X = NO3- or PF6-) or with 4> (X = Cl or I) to give neutral platinum-silver complexes, C)2Pt(μ-dppm)2AgX> (X = Cl or I), in excellent yield.The salts and neutral complexes can be interconverted, e.g. the nitrate salt with NaI gives the neutral platinum-silver iodide complex and when the neutral platinum-silver chloride complex C)2Pt(μ-dppm)2AgCl> is treated with in acetone the corresponding - salt is formed.A more convenient method of synthesis of the complex C)2Pt(μ-dppm)2AgX> is to treat X2 (X = Cl or I) with two equivalents of AgO2CMe + PhCCH.Treatment of X2 with one equivalent of AgO2CMe + RCCH gives platinum-silver monoacetylides of type C)ClPt(μ-dppm)2AgCl> (R = Ph, p-tolyl, Me, CH2CH2Ph, or CMe=CH2).In 'one-pot' reactions PtCl2 (or K2) was treated with two equivalents of dppm followed by one equivalent of AgO2CMe + PhCCH to give the complex C)ClPt(μ-dppm)2AgCl> in 71percent overall yield.This chloro-complex, when treated with LiBr or NaI in dichloromethane-acetone, gave the corresponding bromo- or iodo-complexes )CXPt(μ-dppm)2AgX> (X = Br or I) in ca. 90percent yields.Treatment of CC6H4Me-p)2(dppm-P)2> with gave the platinum-gold complex salt C)2Pt(μ-dppm)2Au>Cl.Treatment of Cl2 with LiCPh)2> gives C)2Pt(μ-dppm)2CuCl>, which in acetone solution + Na gives the correspondng salt C)2Pt(μ-dppm)2Cu>.All of the complexes were characterised by microanalysis, solution conductivity measurenments, i.r. spectroscopy, and particularly (31)P- and (1)H- n.m.r. spectroscopy.The variable-temperature (1)H- and (31)P- n.m.r. spectra of the complexes are discussed.

Combinatorial approach to chiral tris-ligated carbophilic platinum complexes: Application to asymmetric catalysis

Pradal, Alexandre,Gladiali, Serafino,Michelet, Veronique,Toullec, Patrick Y.

supporting information, p. 7128 - 7135 (2014/06/09)

A straightforward methodology for the synthesis of libraries of chiral tris-ligated cationic platinum complexes and their in situ evaluation as asymmetric carbophilic catalysts in a model domino hydroarylation/cyclization reaction of a 1,6-enyne was developed. A catalyst-generation process based on a combination of a monodentate and a bidentate phosphorus ligand allowed the formation of 108 chiral complexes. One-pot screening of the stereoinduction obtained with this library in a test domino addition/cyclization reaction validated this approach and stressed the key role played by the monodentate ligand partner in obtaining high enantioselectivities. In the case of two challenging substrate/nucleophile combinations, the combinatorial approach resulted in a significant gain in enantioselectivity.

Bismuth-halide oxidative addition and bismuth-carbon reductive elimination in platinum complexes containing chelating diphosphine ligands

Nabavizadeh, S. Masoud,Niroomand Hosseini, Fatemeh,Nejabat, Negar,Parsa, Zahra

, p. 13480 - 13489 (2014/01/06)

Reaction of BiX3 (X = Cl, Br, I) with [PtMe2(P-P)], (1a, P-P = dppm; 1b, P-P = dppe), occurs easily to yield a mixture of platinum(II) complexes [PtMeX(P-P)], 2, and [PtX2(P-P)], 3, and the binuclear complex [Pt2Me2(μ-X)(μ-dppm) 2]X, 4. On the basis of 31P NMR and UV-vis spectroscopy, a mechanism is proposed in which the rate determining step is conversion of the yellowish Pt(II)-BiX3 adduct BiI3·[PtMe 2(dppm)], A, into the Pt(IV)-Bi(III) intermediate [PtMe 2(BiX2)X(P-P)], IM1. Density functional theory (DFT) studies suggest that intermediate IM1 may be formed in acetone solution which undergoes the Bi-C reductive elimination process before formation of complexes 2 and 3. The structures of intermediates IM1 were theoretically determined using DFT calculations. In dilute acetone solution, as monitored by UV-vis spectroscopy, the oxidative addition processes follow first order kinetics. The overall reaction is slower for heavier halide.

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