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Oxirane, (3,4-dichlorophenyl)-, (2R)- is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

141303-34-6

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141303-34-6 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 141303-34-6 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,4,1,3,0 and 3 respectively; the second part has 2 digits, 3 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 141303-34:
(8*1)+(7*4)+(6*1)+(5*3)+(4*0)+(3*3)+(2*3)+(1*4)=76
76 % 10 = 6
So 141303-34-6 is a valid CAS Registry Number.

141303-34-6Relevant academic research and scientific papers

One-pot route to β-adrenergic blockers via enantioselective organocatalysed epoxidation of terminal alkenes as a key step

Held, Felix E.,Wei, Shengwei,Eder, Kathrin,Tsogoeva, Svetlana B.

, p. 32796 - 32801 (2014)

A convenient and environmentally attractive one-pot two-step process for the synthesis of β-adrenergic blockers via Shi's organocatalytic epoxidation of terminal alkenes and subsequent aminolysis reaction of epoxides with isopropylamine under mild reaction conditions has been developed. This journal is the Partner Organisations 2014.

A two-step asymmetric synthesis of (R)-monoaryl epoxides using a chiral oxathiane as a recoverable reagent: Application to the preparation of (R)-β-adrenergic compounds

Solladie-Cavallo,Diep-Vohuule

, p. 3494 - 3498 (1995)

It is shown that chiral oxathiane 1 is a recoverable and efficient chiral auxiliary which provides, in two steps, (R)-monoaryl epoxides in high enantiomeric purity (98% R and 92% R according to the solvent used). (R)-β-Adrenergic compounds (R)-(-)-DCI and

Biomimetic non-heme iron-catalyzed epoxidation of challenging terminal alkenes using aqueous H2O2 as an environmentally friendly oxidant

Fingerhut, Anja,Vargas-Caporali, Jorge,Leyva-Ramírez, Marco Antonio,Juaristi, Eusebio,Tsogoeva, Svetlana B.

, (2019/09/06)

Catalysis mediated by iron complexes is emerging as an eco-friendly and inexpensive option in comparison to traditional metal catalysis. The epoxidation of alkenes constitutes an attractive application of iron(III) catalysis, in which terminal olefins are challenging substrates. Herein, we describe our study on the design of biomimetic non-heme ligands for the in situ generation of iron(III) complexes and their evaluation as potential catalysts in epoxidation of terminal olefins. Since it is well-known that active sites of oxidases might involve imidazole fragment of histidine, various simple imidazole derivatives (seven compounds) were initially evaluated in order to find the best reaction conditions and to develop, subsequently, more elaborated amino acid-derived peptide-like chiral ligands (10 derivatives) for enantioselective epoxidations.

Asymmetric synthesis of β-adrenergic blockers through multistep one-pot transformations involving in situ chiral organocatalyst formation

Wei, Shengwei,Messerer, Regina,Tsogoeva, Svetlana B.

supporting information; experimental part, p. 14380 - 14384 (2012/02/01)

Two birds one stone: A new atom-economical one-pot approach to enantioselective chiral drug synthesis, involving in situ multistep organocatalyst formation and the application of the reaction for multistep sequential synthesis of β-adrenergic blockers is disclosed (see scheme).

HETEROCYCLIC DERIVATIVES AS MODULATORS OF ION CHANNELS

-

Page/Page column 35, (2009/05/28)

The present invention relates to heterocyclic derivatives useful as inhibitors of ion channels. The invention also provides pharmaceutically acceptable compositions comprising the compounds of the invention and methods of using the compositions in the treatment of various disorders.

Discovery of a novel series of benzoic acid derivatives as potent and selective human β3 adrenergic receptor agonists with good oral bioavailability. 3. Phenylethanolaminotetraline (PEAT) skeleton containing biphenyl or biphenyl ether moiety

Imanishi, Masashi,Nakajima, Yutaka,Tomishima, Yasuyo,Hamashima, Hitoshi,Washizuka, Kenichi,Sakurai, Minora,Matsui, Shigeo,Imamura, Emiko,Ueshima, Koji,Yamamoto, Takao,Yamamoto, Nobuhiro,Ishikawa, Hirofumi,Nakano, Keiko,Unami, Naoko,Hamada, Kaori,Matsumura, Yasuhiro,Takamura, Fujiko,Hattori, Kouji

experimental part, p. 4804 - 4822 (2009/07/11)

We designed a series of benzoic acid derivatives containing the biphenyl ether or biphenyl template on the RHS and a phenylethanolaminotetraline (PEAT) skeleton, which was prepared by highly stereoselective synthesis, to generate two structurally different lead compounds (10c, 10m) with a good balance of potency, selectivity, and pharmacokinetic profile. Further optimization of the two lead compounds to improve potency led to several potential candidates (i.e., 11f, 11l, 11o, 12b). In particular, biphenyl analogue 12b exhibited an excellent balance of high potency (EC50 = 0.38 nM) for β3, high selectivity over β1 and β2, and good pharmacokinetic properties in rats, dogs, and monkeys.

Effective asymmetric epoxidation of styrenes by chiral dioxirane

Goeddel, David,Shu, Lianhe,Yuan, Yi,Wong, O. Andrea,Wang, Bin,Shi, Yian

, p. 1715 - 1717 (2007/10/03)

High enantioselectivity (80-92% enantiomeric excess (ee)) has been obtained for the epoxidation of various styrenes using an easily prepared ketone (4) catalyst.

Convenient synthesis of optically active 1,2-diol monosulfonates and terminal epoxides via oxazaborolidine-catalyzed asymmetric borane reduction of α-sulfonyloxy ketones

Cho, Byung Tae,Yang, Weon Ki,Choi, Ok Kyung

, p. 1204 - 1211 (2007/10/03)

A very convenient asymmetric synthesis of 1,2-diol monosulfonates and terminal epoxides with high optical purity via oxazaborolidine-catalyzed asymmetric borane reduction of α-sulfonyloxy ketones using N-ethyl-N-isopropylaniline-borane complex as borane carrier has been developed.

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