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93183-62-1

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93183-62-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 93183-62-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 9,3,1,8 and 3 respectively; the second part has 2 digits, 6 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 93183-62:
(7*9)+(6*3)+(5*1)+(4*8)+(3*3)+(2*6)+(1*2)=141
141 % 10 = 1
So 93183-62-1 is a valid CAS Registry Number.

93183-62-1Downstream Products

93183-62-1Relevant academic research and scientific papers

Oxidative kinetic resolution of heterocyclic sulfoxides with a porphyrin-inspired manganese complex by hydrogen peroxide

Yang, Jinchuang,Wang, Lianyue,Lv, Ying,Li, Ning,An, Yue,Gao, Shuang

, p. 156 - 159 (2018)

We have successfully reported here the low loading porphyrin-inspired high-valent manganese (IV)-oxo complex was applied in oxidative kinetic resolution (OKR) of racemic heterocyclic sulfoxides using the environmentally benign hydrogen peroxide for the first time. This approach allows for rapid OKR (0.5 h) of a variety of racemic sulfoxides (including pyridine, pyrimidine, pyrazine, thiazole, benzothiazole, thiophene) in excellent enantioselectivity (up to > 99% ee), simultaneously generating the corresponding sulfones in high yield (up to 80%). The catalytic system also showed an unexceptionable chemoselectivity for the sulfoxide substrates with hydroxyl groups in which only the sulfoxide group was oxidized. The practical utility of the method has been demonstrated in the OKR of gram-scale sulfoxides.

Chiral Ligands in Hypervalent Iodine Compounds: Synthesis and Structures of Binaphthyl-Based λ3-Iodanes

Zhang, Huaiyuan,Cormanich, Rodrigo A.,Wirth, Thomas

supporting information, (2021/12/22)

Several novel binaphthyl-based chiral hypervalent iodine(III) reagents have been prepared and structurally analysed. Various asymmetric oxidative reactions were applied to evaluate the reactivities and stereoselectivities of those reagents. Moderate to excellent yields were observed; however, very low stereoselectivities were obtained. NMR experiments indicated that these reagents are very easily hydrolysed in either chloroform or DMSO solvents leading to the limited stereoselectivities. It is concluded that the use of chiral ligands is an unsuccessful way to prepare efficient stereoselective iodine(III) reagents.

Highly Chemoselective and Enantioselective Catalytic Oxidation of Heteroaromatic Sulfides via High-Valent Manganese(IV)-Oxo Cation Radical Oxidizing Intermediates

Dai, Wen,Shang, Sensen,Lv, Ying,Li, Guosong,Li, Chunsen,Gao, Shuang

, p. 4890 - 4895 (2017/07/24)

A manganese complex with a porphyrin-like ligand that catalyzes the highly chemoselective and enantioselective oxidation of heteroaromatic sulfides, including imidazole, benzimidazole, indole, pyridine, pyrimidine, pyrazine, sym-triazine, thiophene, thiaz

Enantioselective sulfoxidation reaction catalyzed by a G-quadruplex DNA metalloenzyme

Cheng, Mingpan,Li, Yinghao,Zhou, Jun,Jia, Guoqing,Lu, Sheng-Mei,Yang, Yan,Li, Can

, p. 9644 - 9647 (2016/08/04)

Enantioselective sulfoxidation reaction is achieved for the first time by a DNA metalloenzyme assembled with the human telomeric G-quadruplex DNA and Cu(ii)-4,4′-bimethyl-2,2′-bipyridine complex, and the mixed G-quadruplex architectures are responsible for the catalytic enantioselectivity and activity.

Exploring the biocatalytic scope of a bacterial flavin-containing monooxygenase

Rioz-Martinez, Ana,Kopacz, Malgorzata,De Gonzalo, Gonzalo,Torres Pazmino, Daniel E.,Gotor, Vicente,Fraaije, Marco W.

experimental part, p. 1337 - 1341 (2011/04/23)

A bacterial flavin-containing monooxygenase (FMO), fused to phosphite dehydrogenase, has been used to explore its biocatalytic potential. The bifunctional biocatalyst could be expressed in high amounts in Escherichia coli and was able to oxidize indole and indole derivatives into a variety of indigo compounds. The monooxygenase also performs the sulfoxidation of a wide range of prochiral sulfides, showing moderate to good enantioselectivities in forming chiral sulfoxides. The Royal Society of Chemistry 2011.

Enzymatic synthesis of novel chiral sulfoxides employing Baeyer-villiger monooxygenases

Rioz-Martinez, Ana,De Gonzalo, Gonzalo,Pazmino, Daniel E. Torres,Fraaije, Marco W.,Gotor, Vicente

experimental part, p. 6409 - 6416 (2011/02/24)

Optically active sulfoxides are compounds of high interest in organic chemistry. Herein, we report the preparation of a set of chiral heteroaryl alkyl, cyclohexyl alkyl, and alkyl alkyl sulfoxides by using enantioselective sulfoxidation reactions employing three Baeyer-Villiger monooxygenases (BVMOs). Careful selection of the reaction conditions, starting sulfide, and biocatalyst can be used to achieve good to excellent enantiomeric excess values. Thus, valuable chiral synthons can be obtained by performing the reactions under mild and environmentally friendly conditions. The most promising biotransformations that employ a BVMO cell-free extract preparation have been developed on a 250-mg scale to give the chiral sulfoxides in high yields in most of the reactions. Copyright

Toluene and naphthalene dioxygenase-catalysed sulfoxidation of alkyl aryl sulfides

Boyd, Derek R.,Sharma, Narain D.,Haughey, Simon A.,Kennedy, Martina A.,McMurray, Brian T.,Sheldrake, Gary N.,Allen, Christopher C. R.,Dalton, Howard,Sproule, Kenneth

, p. 1929 - 1933 (2007/10/03)

A series of alkyl aryl sulfides were metabolised, using selected strains of the soil bacterium Pseudomonas putida containing either toluene dioxygenase (TDO) or naphthalene dioxygenase (NDO), to give chiral sulfoxides. Alkyl aryl sulfoxides 2a-2k, 4a-4j and 4l, having enantiomeric excess (ee) values of >90%, were obtained by use of the appropriate strain of P. putida (UV4 or NCIMB 8859). Enantiocomplementarity was observed for the formation of sulfoxides 2a, 2b, 2d, 2j, 4a, 4b and 4d, with TDO-catalysed (UV4) oxidation favouring the (R) enantiomer and NDO-catalysed oxidation (NCIMB 8859) the (S) enantiomer. Evidence of involvement of the TDO enzyme was obtained using a recombinant strain of Escherichia coli (pKST 11). The marked degree of stereoselectivity appears to be mainly due to enzyme-catalysed asymmetric sulfoxidation, however the possibility of a minor contribution from kinetic resolution, in some cases, cannot be excluded.

Sulfoxides of High Enantiopurity from Bacterial Dioxygenase-catalysed Oxidation

Allen, Christopher C. R.,Boyd, Derek R.,Dalton, Howard,Sharma, Narain D.,Haughey, Simon A.,et al.

, p. 119 - 120 (2007/10/02)

Selected strains of the bacterium Pseudomonas putida (previously shown to effect dioxygenase-catalysed asymmetric cis-dihydroxylation of alkenes) have been found to yield chiral sulfoxides from the corresponding sulfides with a strong preference for the (R)- or (S)-configurations but without evidence of sulfone formation; similar results obtained using an Escherichia coli clone (pKST11, containing the Tod C1 C2 B and A genes encoding toluene dioxygenase from P. putida NCIMB 11767) are again consistent with a stereoselective dioxygenase-catalysed sulfoxidation.

Effects of Substrate Structure on the Enantioselectivity and Stereochemical Course of Sulfoxidation Catalyzed by Cyclohexanone Monooxygenase

Carrea, Giacomo,Redigolo, Barbara,Riva, Sergio,Colonna, Stefano,Gaggero, Nicoletta,et al.

, p. 1063 - 1068 (2007/10/02)

A systematic study of the stereochemistry of oxidation at sulfur catalyzed by cyclohexanone monooxygenase from Acinetobacter using as the substrates numerous alkyl aryl sulfides, dialkyl sulfides and dialkyl sulfides has been carried out.It was found that

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