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(2-methyl-4,4-diphenylpyrrolidin-1-yl)(naphthalen-1′-yl)methanone is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1055301-00-2

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1055301-00-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1055301-00-2 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,0,5,5,3,0 and 1 respectively; the second part has 2 digits, 0 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 1055301-00:
(9*1)+(8*0)+(7*5)+(6*5)+(5*3)+(4*0)+(3*1)+(2*0)+(1*0)=92
92 % 10 = 2
So 1055301-00-2 is a valid CAS Registry Number.

1055301-00-2Downstream Products

1055301-00-2Relevant academic research and scientific papers

Gold(I)-Catalysed Asymmetric Hydroamination of Alkenes: A Silver- and Solvent-Dependent Enantiodivergent Reaction

Abadie, Marc-Antoine,Trivelli, Xavier,Medina, Florian,Duhal, Nathalie,Kouach, Mostafa,Linden, Bernhard,Génin, Eric,Vandewalle, Maxence,Capet, Frédéric,Roussel, Pascal,Del Rosal, Iker,Maron, Laurent,Agbossou-Niedercorn, Francine,Michon, Christophe

, p. 10777 - 10788 (2017)

In the present study, we report the first silver-dependent enantiodivergent gold-catalysed reaction. The asymmetric intramolecular hydroamination of alkenes catalysed by the combination of a single chiral binuclear gold(I) chloride complex and silver perchlorate can afford both enantiomers of the products by a simple solvent change from toluene to methanol. Such an enantiodivergent reaction is strictly independent of the reaction temperature or of the nature of the catalyst anion and displays the same first-order kinetic rate law with respect to substrate concentration in both solvents. Beyond a simple solvent effect the enantioinversion is controlled by gold–silver chloride adducts which occur only in methanol and allow a dual activation of the reagent. While one single gold atom activates the alkene moiety, the other gold atom forms an oxophilic gold–silver chloride adduct which is likely to interact with the carbamate function. By comparison with toluene, which affords (S)-enantiomer, this proximal and bimetallic activation would allow an opposite stereodifferentiation of the two diastereomeric intermediates during the final protodeauration step and lead therefore to the (R)-enantiomer.

Chiral amino-phosphine and amido-phosphine complexes of Ir and Mg. Catalytic applications in olefin hydroamination

Schmid, Bernhard,Frie?, Sibylle,Herrera, Alberto,Linden, Anthony,Heinemann, Frank W.,Locke, Harald,Harder, Sjoerd,Dorta, Romano

, p. 12028 - 12040 (2016)

The reactions of rac- and (S,S)-trans-9,10-dihydro-9,10-ethanoanthracene-11,12-diamine (ANDEN) with PClPh2 in the presence of NEt3 yield the chiral amino-phosphine ligands rac-6 and (S,S)-6, respectively, on multi-gram scales. Both forms of 6 react quantitatively with MgPh2 to afford the C2-symmetric, N-bound Mg amidophosphine complexes rac-7 and (S,S)-7. The former crystallizes as a racemic conglomerate, which is a rare occurrence. Mixing (S,S)- or rac-6 with [IrCl(COE)2]2 leads in both cases to the homochiral dinuclear chloro-bridged P-ligated aminophosphine iridium complexes (S,S,S,S)-9 and rac-9 in excellent yields. X-ray quality single crystals only grow as the racemic compound (or 'true racemate') rac-9 thanks to its lowered solubility. In the coordinating solvent CH3CN, rac-9 transforms in high yield into mononuclear Ir-complex rac-10. The crystal structures of compounds rac-6, (S,S)-7, rac-9, and rac-10 reveal the ambidentate nature of the P-N function: amide-coordination in the Mg-complex (S,S)-7 and P-chelation of the softer Ir(i) centres in complexes rac-9 and rac-10. Furthermore, the crystal structures show flexible, symmetry lowering seven-membered P-chelate rings in the Ir complexes and a surprising amount of deformation within the ANDEN backbone. The simulation of this deformation by DFT and SCF calculations indicates low energy barriers. (S,S)-7 and (S,S,S,S)-9 catalyze the intra- and intermolecular hydroamination of alkenes, respectively: 5 mol% of (S,S)-7 affords 2-methyl-4,4′-diphenylcyclopentyl amine quantitatively (7% ee), and 2.5 mol% of (S,S,S,S)-9 in the presence of 5.0 mol% co-catalyst (LDA, PhLi, or MgPh2) gives exo-(2-arylamino)bornanes in up to 68% yield and up to 16% ee.

Convenient method for the rapid generation of highly active and enantioselective yttrium catalysts for asymmetric hydroamination

Hannedouche, Jerome,Aillaud, Isabelle,Collin, Jacqueline,Schulz, Emmanuelle,Trifonov, Alexander

, p. 3552 - 3554 (2008)

A facile method for the preparation of highly active and enantioselective yttrium precatalysts for asymmetric hydroamination of gem-disubstituted aminoalkenes, from the combination of YCl3 or YCl3(THF) 3.5 with ligand (R)-

A highly enantioselective zirconium catalyst for intramolecular alkene hydroamination: Significant isotope effects on rate and stereoselectivity

Manna, Kuntal,Xu, Songchen,Sadow, Aaron D.

supporting information; experimental part, p. 1865 - 1868 (2011/04/22)

Zirconium catalysts sparkle: A new chiral zirconium complex has been used to catalyze hydroamination reactions to cyclize aminopentenes into 2-methylpyrrolidines (see scheme). The rate law supports a mechanism involving a reversible substrate-catalyst interaction that precedes the rate-determining step. A new mechanism for zirconium-catalyzed hydroamination has been proposed based on kinetic isotope effects and the significant effect of isotopic substitution on enantioselectivity.

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