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Benzenepropanoic acid, 3-chloro-β-hydroxy, methyl ester, (R)-, also known as (R)-3-chloro-β-hydroxybenzenepropanoic acid methyl ester, is a chiral organic compound with the molecular formula C10H11ClO3. It is a derivative of benzenepropanoic acid, featuring a 3-chloro substituent and a β-hydroxy group, with a methyl ester functional group attached to the carboxylic acid. Benzenepropanoic acid, 3-chloro-b-hydroxy-, methyl ester, (R)- is an enantiomer, with the (R)-configuration indicating the specific arrangement of atoms in three-dimensional space. It is used in the synthesis of various pharmaceuticals and has potential applications in the development of new drugs due to its unique structural properties.

135505-20-3

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135505-20-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 135505-20-3 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,3,5,5,0 and 5 respectively; the second part has 2 digits, 2 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 135505-20:
(8*1)+(7*3)+(6*5)+(5*5)+(4*0)+(3*5)+(2*2)+(1*0)=103
103 % 10 = 3
So 135505-20-3 is a valid CAS Registry Number.

135505-20-3Relevant academic research and scientific papers

Chiral Nitroarenes as Enantioselective Single-Electron-Transfer Oxidants for Carbene-Catalyzed Radical Reactions

Wang, Hongling,Wang, Yuhuang,Chen, Xingkuan,Mou, Chengli,Yu, Shuyan,Chai, Huifang,Jin, Zhichao,Chi, Yonggui Robin

supporting information, p. 7440 - 7444 (2019/10/02)

A new class of chiral oxidants is developed. These readily accessible oxidants contain a nitro group for oxidation and a chiral sulfonamide moiety for stereoselectivity control. The chiral information from the oxidants can effectively transfer to the substrates in carbene-catalyzed β-hydroxylation of enals via single-electron-transfer radical processes. We expect these oxidants to find unique applications in other asymmetric oxidations and oxygen-atom-transferring reactions.

On the basis of the phenethylamine skeleton chiral P, N, N ligand compound and its manufacturing method and application (by machine translation)

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Paragraph 0105; 0115; 0116; 0153-0159, (2019/06/13)

The present invention provides a chiral P based on the skeleton of the phenethylamine, N, N ligand compound and its manufacturing method and application, surfactant-ethylamine skeleton chiral P, N, N ligand compound of preparation method is as follows: under the protection of nitrogen, the chiral phenylethylamine - [...] compound with 2 - chloromethyl oxazole oxazoline compounds soluble in the reaction solvent, adding alkali, reflux reaction, filtering, desolvation, column chromatography to obtain the required chiral P, N, N ligand compound. In particular to the β - ketoacid ester compound in asymmetric catalytic hydrogenation reaction. The invention of the phenethylamine skeleton chiral P, N, β - keto ester N ligand can be applied to the asymmetric catalytic hydrogenation reaction, can be high yield and high enantio-selectively for the preparation of chiral β - hydroxy ester. (by machine translation)

Iridium-catalyzed asymmetric hydrogenation of β-keto esters with new phenethylamine-derived tridentate P,N,N-ligands

Wei, De-Quan,Chen, Xiu-Shuai,Hou, Chuan-Jin,Hu, Xiang-Ping

supporting information, p. 237 - 243 (2019/01/21)

A new class of phenethylamine-derived tridentate P,N,N-ligands has been successfully developed. These ligands exhibited good performance in the Ir-catalyzed asymmetric hydrogenation of β-keto esters, affording the corresponding β-hydroxy esters in moderat

Iridium-catalyzed asymmetric hydrogenation of β-keto esters with f-amphox ligands

Qin, Chao,Chen, Xiu-Shuai,Hou, Chuan-Jin,Liu, Hongzhu,Liu, Yan-Jun,Huang, De-Zhi,Hu, Xiang-Ping

supporting information, p. 672 - 676 (2018/02/19)

The iridium-catalyzed asymmetric hydrogenation of β-keto esters with chiral tridentate P,N,N-ligands (f-amphox) has been developed. Under the optimized conditions, a wide range of β-keto esters can be hydrogenated smoothly, affording the corresponding β-hydroxy esters in good to excellent enantioselectivities (up to 95% ee).

Method for preparing chiral beta-hydroxy ester by Ir-catalyzed asymmetric hydrogenation

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Paragraph 0091; 0093; 0094, (2018/06/26)

The invention provides a method for preparing a chiral beta-hydroxy ester compound by Ir-catalyzed asymmetric hydrogenation. The method for preparing the chiral beta-hydroxy ester compound comprises the steps as follows: in a glove box filled with nitrogen, [Ir(COD)Cl]2 and a chiral P, N, N ligand are dissolved in anhydrous methanol, stirring is performed at room temperature for 1 hour, and a Ir catalyst is generated; substrate beta-ketoester and a base additive are added, the mixture is placed in an autoclave and hydrogenated under certain reaction pressure; hydrogen gas is slowly released, separation with a silica gel column is performed after a solvent is removed, and product beta-hydroxy ester is obtained. The reaction for preparing chiral beta-hydroxy ester by Ir-catalyzed asymmetrichydrogenation of beta-ketoester has the advantages that conditions are mild, operation is easy, enantioselectivity of the product is high and the like.

PHENANTHROLINE PHOSPHONIC ACID DERIVATIVE AND PREPARATION METHOD THEREFOR AND APPLICATION THEREOF

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Paragraph 0128-0130, (2017/02/28)

The present invention relates to a novel phenanthroline phosphonic acid compound and a pharmaceutical salt thereof, as well as an application of the compound and the pharmaceutical salt thereof as collagen prolyl hydroxylase inhibitors in the preparation of drugs for preventing or treating collagen prolyl-4-hydroxylase related disease.

Ir-catalyzed asymmetric hydrogenation of β-keto esters with chiral ferrocenyl P,N,N-ligands

Chen, Xiu-Shuai,Hou, Chuan-Jin,Qin, Chao,Liu, Hongzhu,Liu, Yan-Jun,Huang, De-Zhi,Hu, Xiang-Ping

, p. 12871 - 12875 (2017/03/11)

The Ir-catalyzed asymmetric hydrogenation of β-keto esters with chiral ferrocenyl P,N,N-ligands has been developed. Under the optimized conditions, a wide range of β-keto esters were hydrogenated to afford the corresponding β-hydroxy esters in good to excellent enantioselectivities (up to 95% ee).

Studies on the chemoenzymatic synthesis of (R)- and (S)-methyl 3-aryl-3-hydroxypropionates: The influence of toluene-pretreatment of lipase preparations on enantioselective transesterifications

Borowiecki, Pawel,Bretner, Maria

, p. 925 - 936 (2013/09/23)

Two series (para- and meta-substituted) of racemic methyl esters of 3-aryl-3-hydroxypropionic acid were prepared after which the enantiomers were separated by an enzyme-catalyzed transesterification. Several lipases were investigated as the catalyst. The influence of the enzyme pretreatment, as well as substrate concentration, reaction temperature, stirring manner, and substrate conversion on the stereochemical outcome of the biotransformation process were investigated in detail. The best results were achieved by using solvent-pretreated lipase from Pseudomonas fluorescens or Burkholderia cepacia suspended in toluene, and vinyl acetate as the acetyl group donor.

Novel phosphonic acid based prodrugs of PMEA and its analogues

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Page 18-19, (2010/11/30)

Prodrugs of Formula I, their uses, their intermediates, and their method of manufacture are described: 1wherein: M and V are cis to one another and MPO3H2 is a phosphonic acid selected from the group consisting of 9-(2-phosphonylmet

Synthesis of Shikonin and Alkannin

Braun, Manfred,Bauer, Claus

, p. 1157 - 1164 (2007/10/02)

The enantiomeric naturally occurring naphthoquinones shikonin and alkannin have been synthesized in a thirteen-step procedure in 44 to 65percent e.e.The stereogenic centers of (R)-1 and (S)-1 are created by the reaction of naphthaldehyde 3 with (R)- and (S)-2-hydroxy-1,2,2-triphenylethyl acetate (2), respectively.In order to find out a rationalization for the unexpectedly low diastereoselectivity in this aldol addition, a series of substituted aromatic aldehydes 12a-h has been treated with (R)-2. Key words: Naphthoquinone / Aldol addition / (R)-Shikonin / (S)-Alkannin

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