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(1S,2S)-2-chlorocyclohexan-1-ol is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

104265-20-5

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104265-20-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 104265-20-5 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,0,4,2,6 and 5 respectively; the second part has 2 digits, 2 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 104265-20:
(8*1)+(7*0)+(6*4)+(5*2)+(4*6)+(3*5)+(2*2)+(1*0)=85
85 % 10 = 5
So 104265-20-5 is a valid CAS Registry Number.

104265-20-5Relevant academic research and scientific papers

Asymmetric synthesis using organoboranes. Relative effectiveness of the B-Halobis(terpenyl)boranes for the enantioselective halogenative cleavage of representative meso-epoxides

Roy, Chandra D.,Brown, Herbert C.

, p. 835 - 842 (2007)

A comparative study of the relative effectiveness of various Ter 2BX, such as dEap2BX, lEap 2BX, 2-dIcr2BX, 4-dIcr 2BX, and lCleap2BX

Enantioselective epoxide ring opening catalyzed by bis(tetrahydroisoquinoline) N,N′-dioxides

Kadlcikova, Aneta,Vlasana, Klara,Kotora, Martin

, p. 415 - 422 (2011)

Four bis(tetrahydroisoquinoline) N,N′-dioxides were used as catalysts for the epoxide ring opening with tetrachlorosilane under various conditions. A strong solvent effect on asymmetric induction was observed for each of the used catalysts. The highest achieved asymmetric induction for the opening of meso-stilbene oxide was 69% ee. Regarding the cycloalkene oxides, 56% ee was obtained in the reaction with cyclooctene oxide.

Design, validation, and implementation of a rapid-injection NMR system

Denmark, Scott E.,Williams, Bruce J.,Eklov, Brian M.,Pham, Son M.,Beutner, Gregory L.

, p. 5558 - 5572 (2010)

A Rapid Injection NMR (RINMR) apparatus has been designed and constructed to allow the observation of fast chemical reactions in real time by NMR spectroscopy. The instrument was designed to allow the rapid (2 s) injection and mixing of a metered volume

Asymmetric ring opening of meso-epoxides catalyzed by the chiral phosphine oxide BINAPO

Tokuoka, Eisuke,Kotani, Shunsuke,Matsunaga, Hirofumi,Ishizuka, Tadao,Hashimoto, Shunichi,Nakajima, Makoto

, p. 2391 - 2392 (2005)

The enantioselective ring opening of meso-epoxides with tetrachlorosilane in the presence of diisopropylethylamine using chiral phosphine oxide BINAPO as the catalyst affords the corresponding chlorohydrins in high enantioselectivities of up to 90% ee.

Enantioselective Ring Opening of meso-Epoxides with Silicon Tetrachloride Catalyzed by Pyridine N-Oxides Fused with the Bicyclo[3.3.1]nonane Framework

Neni?kis, Algirdas,Ston?ius, Sigitas

supporting information, p. 6359 - 6369 (2015/10/06)

The synthesis of new chiral Lewis basic organocatalysts that contain pyridine N-oxide moieties fused with the bicyclo[3.3.1]nonane framework is reported. The obtained pyridine N-oxides were employed as catalysts in the enantioselective ring opening of meso-epoxides with silicon tetrachloride. Derivative 1b endowed with two 2,4-diaryl-substituted pyridine N-oxide moieties proved to be a particularly effective catalyst for desymmetrization of norbornene oxide 16i to furnish Wagner-Meerwein rearrangement product 20i in unprecedented 96 % ee. Difunctional congener 3, which is striped of the 4-aryl substituents, exhibited moderate to high levels of asymmetric induction (47-88 % ee) with alicyclic epoxide substrates. Chiral Lewis basic catalysts with pyridine N-oxide moieties fused with a bicyclo[3.3.1]nonane framework were used in the enantioselective ring opening of meso-epoxides. 2,4-Diaryl-substituted N-oxide exhibited excellent asymmetric induction with norbornene oxide (96 % ee), whereas less-substituted congener was most effective with alicyclic epoxide substrates (47-88 % ee).

Conformationally rigid chiral bicyclic skeleton-tethered bipyridine N,N'-dioxide as organocatalyst: Asymmetric ring opening of meso-epoxides

Gnanamani, Elumalai,Someshwar, Nagamalla,Sanjeevi, Jayakumar,Ramanathan, Chinnasamy Ramaraj

supporting information, p. 2219 - 2223 (2014/07/21)

The conformationally rigid chiral bicyclic skeleton tethered bipyridine NN'-dioxide (-)-9 has been designed, synthesized and examined as an organocatalyst in the enantioselective ring opening of meso-epoxides using tetrachlorosilane (SiCl4). The catalyst (-)-9 is found to exhibit good enantioselectivity for substituted cis-stilbene epoxides; whereas, the saturated cyclic meso-epoxides display a moderate enantioselectivity. At -30 °C in chloroform, the catalyst (-)-9 with 0.5 mol % loading generated the chlorohydrins in up to 97 % yield with up to 93 % ee. The possible creation of transient axial chiral environment around hypervalent silicon species due to the presence of conformationally rigid chiral bicyclic skeleton tethered bipyridine N,N'-dioxide may be responsible for such enantioselectivity observed in the desymmetrization of meso-epoxides.

Enzymatic preparation of (1S,2R)- and (1R,2S)-stereoisomers of 2-halocycloalkanols

Kolodiazhna, Olga O.,Kolodiazhna, Anastasy O.,Kolodiazhnyi, Oleg I.

, p. 37 - 42 (2013/02/25)

The stereoisomers of cis-2-halocycloalkanols were resolved by a kinetically controlled transesterification with vinyl acetate in the presence of lipases in organic media. High enantioselectivities (ee >98%) and good isolated yields were obtained for all substrates using the appropriate lipase. Burkholderia cepacia lipase was the most efficient enzyme for the resolution of these substrates. The enantiomeric purities of the compounds were defined by derivatization with Mosher's acid and the absolute configurations were determined by chemical correlation.

Facile synthesis of chiral 1,2-chlorohydrins via the ring-opening of meso-epoxides catalyzed by chiral phosphine oxides

Kotani, Shunsuke,Furusho, Haruka,Sugiura, Masaharu,Nakajima, Makoto

, p. 3075 - 3081 (2013/03/28)

The facile synthesis of chiral 1,2-chlorohydrins via the enantioselective ring-opening of meso-epoxides with silicon tetrachloride in the presence of a chiral phosphine oxide was accomplished. The chiral 1,2-chlorohydrins were also obtained from the corresponding cis-alkenes in one-pot without significant loss in the selectivity, thereby permitting easy access to the 1,2-chlorohydrins from cis-alkenes with good yields and enantioselectivities.

Allenes in asymmetric catalysis: Asymmetric ring opening of meso-epoxides catalyzed by allene-containing phosphine oxides

Pu, Xiaotao,Qi, Xiangbing,Ready, Joseph M.

supporting information; experimental part, p. 10364 - 10365 (2009/12/03)

(Chemical Equation Presented) Unsymmetrically substituted allenes (1,2-dienes) are inherently chiral and can be prepared in optically pure form. Nonetheless, to date the allene framework has not been incorporated into ligands for asymmetric catalysis. Since allenes project functionality differently than either tetrahedral carbon or chiral biaryls, they may create complementary chiral environments. This study demonstrates that optically active, C 2-symmetric allene-containing bisphosphine oxides can catalyze the addition of SiCl4 to meso-epoxides with high enantioselectivity. The epoxide opening likely involves generation of a Lewis acidic, cationic (bisphosphine oxide)SiCl3 complex. The fact that high asymmetric induction is observed suggests that allenes may represent a new platform for the development of ligands and catalysts for asymmetric synthesis.

Enantioselective synthesis of vicinal halohydrins via dynamic kinetic resolution

Ros, Abel,Magriz, Antonio,Dietrich, Hansjoerg,Fernandez, Rosario,Alvarez, Eleuterio,Lassaletta, Jose M.

, p. 127 - 130 (2007/10/03)

(Chemical Equation Presented) Expanding the scope of enantioselective catalysis via DKR, transfer hydrogenation of a variety of cyclic α-halo ketones was accomplished using the Noyori/Ikariya (R,R)- or (S,S)-I catalysts and either HCO2H/Et3N or HCO2Na/n-Bu 4NBr in H2O/CH2Cl2 as the hydrogen sources. Good yields of vicinal bromo-, chloro-, and fluorohydrins with excellent de and ee levels were achieved in most cases after a simple tuning of reaction conditions.

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