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90319-52-1

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90319-52-1 Usage

Chemical Properties

white to light yellow crystal powde

Uses

Different sources of media describe the Uses of 90319-52-1 differently. You can refer to the following data:
1. synthon for a-amino acids and b-lactam antibiotics
2. (R)-(-)-4-Phenyl-2-oxazolidinone (cas# 90319-52-1) is a compound useful in organic synthesis.
3. Used for α-amino acid synthesis and the preparation of β-lactam antibiotics.

Check Digit Verification of cas no

The CAS Registry Mumber 90319-52-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 9,0,3,1 and 9 respectively; the second part has 2 digits, 5 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 90319-52:
(7*9)+(6*0)+(5*3)+(4*1)+(3*9)+(2*5)+(1*2)=121
121 % 10 = 1
So 90319-52-1 is a valid CAS Registry Number.
InChI:InChI=1/C9H9NO2/c11-9-10-8(6-12-9)7-4-2-1-3-5-7/h1-5,8H,6H2,(H,10,11)/t8-/m0/s1

90319-52-1 Well-known Company Product Price

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  • TCI America

  • (P1307)  (R)-(-)-4-Phenyl-2-oxazolidinone  >99.0%(GC)

  • 90319-52-1

  • 5g

  • 590.00CNY

  • Detail
  • TCI America

  • (P1307)  (R)-(-)-4-Phenyl-2-oxazolidinone  >99.0%(GC)

  • 90319-52-1

  • 25g

  • 1,450.00CNY

  • Detail
  • Alfa Aesar

  • (H27171)  (R)-(-)-4-Phenyl-2-oxazolidinone, 98%   

  • 90319-52-1

  • 1g

  • 957.0CNY

  • Detail
  • Alfa Aesar

  • (H27171)  (R)-(-)-4-Phenyl-2-oxazolidinone, 98%   

  • 90319-52-1

  • 5g

  • 2933.0CNY

  • Detail
  • Aldrich

  • (402451)  (R)-(−)-4-Phenyl-2-oxazolidinone  98%

  • 90319-52-1

  • 402451-1G

  • 630.63CNY

  • Detail
  • Aldrich

  • (402451)  (R)-(−)-4-Phenyl-2-oxazolidinone  98%

  • 90319-52-1

  • 402451-5G

  • CNY

  • Detail

90319-52-1SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 14, 2017

Revision Date: Aug 14, 2017

1.Identification

1.1 GHS Product identifier

Product name (R)-(-)-4-Phenyl-2-Oxazolidinone

1.2 Other means of identification

Product number -
Other names (4R)-4-phenyl-1,3-oxazolidin-2-one

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:90319-52-1 SDS

90319-52-1Relevant articles and documents

Stereoselective Synthesis of Enantiopure Oxazolidinones via Biocatalytic Asymmetric Aminohydroxylation of Alkenes

Zhou, Xiao-Ying,Wan, Nan-Wei,Li, Ying-Na,Ma, Ran,Cui, Bao-Dong,Han, Wen-Yong,Chen, Yong-Zheng

supporting information, p. 4343 - 4348 (2021/08/03)

Chiral oxazolidinones are of significance in both medicinal and synthetic chemistry, while preparing these compounds usually involves using expensive starting materials and harsh reaction conditions. Herein, a one-pot biocatalytic cascade process was developed for stereo- and regioselective aminohydroxylation of diverse alkenes by combining styrene monooxygenase and halohydrin dehalogenase, providing an approach to enantiopure oxazolidinones. (Figure presented.).

Chiral separation materials based on derivatives of 6-amino-6-deoxyamylose

Gao, Ya-Ya,Zhang, Yu-Hang,Zhang, Shan,Chen, Wei,Bai, Zheng-Wu

supporting information, p. 899 - 914 (2021/10/07)

In order to develop new type of chiral separation materials, in this study, 6-amino-6-deoxyamylose was used as chiral starting material with which 10 derivatives were synthesized. The amino group in 6-amino-6-deoxyamylose was selectively acylated and then the hydroxyl groups were carbamoylated yielding amylose 6-amido-6-deoxy-2,3-bis(phenylcarbamate)s, which were employed as chiral selectors (CSs) for chiral stationary phases of high-performance liquid chromatography. The resulted 6-amido-6-deoxyamyloses and amylose 6-amido-6-deoxy-2,3-bis(phenylcarbamate)s were characterized by IR, 1H NMR, and elemental analysis. Enantioseparation evaluations indicated that most of the CSs demonstrated a moderate chiral recognition capability. The 6-nonphenyl (6-nonPh) CS of amylose 6-cyclohexylformamido-6-deoxy-2,3-bis(3,5-dimethylphenylcarbamate) showed the highest enantioselectivity towards the tested chiral analytes; the phenyl-heterogeneous (Ph-hetero) CS of amylose 6-(4-methylbenzamido)-6-deoxy-2,3-bis(3,5-dimethylphenylcarbamate) baseline separated the most chiral analytes; the phenyl-homogeneous (Ph-homo) CS of amylose 6-(3,5-dimethylbenzamido)-6-deoxy-2,3-bis(3,5-dimethylphenylcarbamate) also exhibited a good enantioseparation capability among the developed CSs. Regarding Ph-hetero CSs, the enantioselectivity depended on the combination of the substituent at 6-position and that at 2- and 3-positions; as for Ph-homo CSs, the enantioselectivity was related to the substituent at 2-, 3-, and 6-positions; with respect to 6-nonPh CSs, the retention factor of most analytes on the corresponding CSPs was lower than that on Ph-hetero and Ph-homo CSPs in the same mobile phases, indicating π–π interactions did occur during enantioseparation. Although the substituent at 6-position could not provide π–π interactions, the 6-nonPh CSs demonstrated an equivalent or even higher enantioselectivity compared with the Ph-homo and Ph-hetero CSs.

Synthesis of Chiral 5-Aryl-2-oxazolidinones via Halohydrin Dehalogenase-Catalyzed Enantio- and Regioselective Ring-Opening of Styrene Oxides

Wan, Nanwei,Zhou, Xiaoying,Ma, Ran,Tian, Jiawei,Wang, Huihui,Cui, Baodong,Han, Wenyong,Chen, Yongzheng

, p. 1201 - 1207 (2020/02/05)

An efficient biocatalytic approach for enantio- and regioselective ring-opening of styrene oxides with cyanate was developed by using the halohydrin dehalogenase HheC from Agrobacterium radiobacter AD1, generating the corresponding chiral 5-aryl-2-oxazoli

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