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119068-37-0

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119068-37-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 119068-37-0 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,1,9,0,6 and 8 respectively; the second part has 2 digits, 3 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 119068-37:
(8*1)+(7*1)+(6*9)+(5*0)+(4*6)+(3*8)+(2*3)+(1*7)=130
130 % 10 = 0
So 119068-37-0 is a valid CAS Registry Number.

119068-37-0Relevant articles and documents

Dynamic Kinetic Resolution in BINAP-Ruthenium(II) Catalyzed Hydrogenation of 2-Substituted 3-Oxo Carboxylic Esters

Kitamura, M.,Ohkuma, T.,Tokunaga, M.,Noyori, R.

, p. 1 - 4 (1990)

BINAP-Ru catalyzed hydrogenation allows efficient dynamic kinetic resolution of certain 2-substituted 3-oxo carboxylic esters having cyclic structures to lead to the alcoholic products in high enantiomeric and diastereomeric excess.

Nitrile oxides in medicinal chemistry. 6. Enzymatic resolution of a set of bicyclic Δ2-isoxazolines

De Amici, Marco,De Micheli, Carlo,Carrea, Giacomo,Riva, Sergio

, p. 787 - 796 (1996)

Chymotrypsin selectively catalyzed the hydrolysis of a series of 3-ethoxycarbonyl-Δ2-isoxazolines 1-4, whereas lipase from Pseudomonas cepacia (lipase PS) was remarkably selective in hydrolysing the corresponding 3-hydroxymethyl-Δ2-i

Lipase-catalysed resolution of cis-1-ethoxycarbonyl-2-hydroxy-cyclohexane: Enantioselective total synthesis of 10-ethyl-trinem

Panunzio, Mauro,Camerini, Roberto,Mazzoni, Andrea,Donati, Daniele,Marchioro, Carla,Pachera, Roberta

, p. 15 - 17 (1997)

Pseudomonas fluorescens lipase (PFL) was used as catalyst for enzymatic resolution of 1-ethoxycarbonyl-2-hydroxy-cyclohexane. The resulting ester was used for the total synthesis of the novel enantiomerically pure 10 ethyl trinem.

Chemoenzymatic approaches to the synthesis of the (1S,2R)-isomer of benzyl 2-hydroxycyclohexanecarboxylate

Tsunekawa, Ryuji,Hanaya, Kengo,Higashibayashi, Shuhei,Shoji, Mitsuru,Sugai, Takeshi

, p. 84 - 89 (2017/12/06)

We examined ten strains of cultured whole-cell yeasts for the asymmetric reduction of commercially available ethyl 2-oxocyclohexanecarboxylate, and found that the (1S,2S)-stereoisomer of ethyl 2-hydroxycyclohexanecarboxylate was the major stereoisomer produced by Williopsis californica JCM 3600. The ethyl group of the ester was then substituted with a benzyl group with low volatility and increased hydrophobicity to facilitate the isolation of the expected product. Incubation with W. californica furnished benzyl (1S,2S)-2-hydroxycyclohexanecarboxylate (>99.9% ee) in 51.0% yield together with its (1R,2S)-isomer (>99.9% ee) in 35.4% yield. Upon treatment of the same substrate bearing the benzyl ester with a screening kit of purified overexpressed carbonyl reductases (Daicel Chiralscreen OH), two enzymes (E031, E078) furnished the (1R,2S)-isomer as the major product. With another enzyme (E007), the (1S,2R)-isomer was obtained, but its ee was very low (25.6%). The highly enantiomerically enriched (1S,2S)-isomer obtained by W. californica was transformed to the (1S,2R)-isomer (>99.9% ee), whose availability until now has been low, in 43.3% yield over two steps involving tosylation and subsequent inversive attack with tetrabutylammonium nitrite.

New Route to Stabilize Ruthenium Nanoparticles with Non-Isolable Chiral N-Heterocyclic Carbenes

Martnez-Prieto, Luis Miguel,Ferry, Anglique,Lara, Patricia,Richter, Christian,Philippot, Karine,Glorius, Frank,Chaudret, Bruno

, p. 17495 - 17502 (2016/01/25)

Ru nanoparticles (RuNPs) stabilized by non-isolable chiral N-heterocyclic carbenes (NHCs), namely SIDPhNp ((4S,5S)-1,3-di(naphthalen-1-yl)-4,5-diphenylimidazolidine) and SIPhOH ((S)-3-((1S,2R)-2-hydroxy-1,2-diphenylethyl)-1-((R)-2-hydroxy-1,2-diphenylethyl)-4,5-dihydro-3H-imidazoline), have been synthesized through a new procedure that does not require isolation of the free carbenes. The obtained RuNPs have been characterized by state-of-the-art techniques and their surface chemistry has been investigated by FTIR and solid-state MAS NMR upon the coordination of CO, which indicated the presence of free and reactive Ru sites. Their catalytic activity has been tested in various hydrogenation reactions involving competition between different sites, whereby interesting differences in selectivity were observed, but no enantioselectivity.

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