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(R)-(4-chlorophenyl)(4'-methoxyphenyl)methanol is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1005216-52-3

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1005216-52-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1005216-52-3 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,0,0,5,2,1 and 6 respectively; the second part has 2 digits, 5 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 1005216-52:
(9*1)+(8*0)+(7*0)+(6*5)+(5*2)+(4*1)+(3*6)+(2*5)+(1*2)=83
83 % 10 = 3
So 1005216-52-3 is a valid CAS Registry Number.

1005216-52-3Downstream Products

1005216-52-3Relevant academic research and scientific papers

Catalytic asymmetric aryl transfer: highly enantioselective preparation of (R)- and (S)-diarylmethanols catalyzed by the same chiral ferrocenyl aziridino alcohol

Wang, Min-Can,Wang, Xiao-Dan,Ding, Xue,Liu, Zhi-Kang

, p. 2559 - 2564 (2008)

Highly enantioselective arylations of arylaldehydes using arylboronic acids as aryl resource were realized in the presence of a catalytic amount of (2S)-1-ferrocenylmethylaziridin-2-yl(diphenyl)methanol. In addition, the R or S enantiomers of a series of given diarylmethanols can be easily obtained in high yields with excellent enantioselectivities simply by the reverse combinations of both reaction partners. A possible transition state for the catalytic asymmetric addition has been proposed on the basis of previous studies.

Direct asymmetric catalytic 1,2-addition of RZnX to aldehydes promoted by AlMe3 and reversal of expected stereochemistry

Shannon, Jonathan,Bernier, David,Rawson, Daniel,Woodward, Simon

, p. 3945 - 3947 (2007)

Addition of AlMe3 to commercial THF solutions of RZnX (R = aryl, functionalised aryl, vinyl; X = Br, I) simultaneously promotes Schlenk equilibria (leading to competent nucleophiles) and the formation of an Al-Zn-ligand catalyst delivering 80-9

Efficient Access to Chiral Benzhydrols via Asymmetric Transfer Hydrogenation of Unsymmetrical Benzophenones with Bifunctional Oxo-Tethered Ruthenium Catalysts

Touge, Taichiro,Nara, Hideki,Fujiwhara, Mitsuhiko,Kayaki, Yoshihito,Ikariya, Takao

supporting information, p. 10084 - 10087 (2016/09/03)

A concise asymmetric transfer hydrogenation of diaryl ketones, promoted by bifunctional Ru complexes with an etherial linkage between 1,2-diphenylethylenediamine (DPEN) and η6-arene ligands, was successfully developed. Because of the effective discrimination of substituents at the ortho position on the aryl group, unsymmetrical benzophenones were smoothly reduced in a 5:2 mixture of formic acid and triethylamine with an unprecedented level of excellent enantioselectivity. For the non-ortho-substituted benzophenones, the oxo-tethered catalyst electronically discerned biased substrates, resulting in attractive performance yielding chiral diarylmethanols with >99% ee.

Diastereomeric aziridine carbinol catalyzed enantioselective arylation reaction: Toward the asymmetric synthesis of both enantiomers of chiral 3-aryl phthalide

Song, Xixi,Hua, Yuan-Zhao,Shi, Jing-Guo,Sun, Ping-Ping,Wang, Min-Can,Chang, Junbiao

, p. 6087 - 6093 (2014/07/21)

The diastereomeric aziridine carbinols are applied, respectively, as efficient chiral ligand in the catalysis of asymmetric arylation and sequential arylation-lactonization cascade. The two diastereomers, which are facilely synthesized from the same chiral source, function as pseudo enantiomers in arylation of aromatic aldehydes providing the different enantiomers of the diarylmethanols with almost the same excellent enantioselectivities. The arylation method is also carried out in tandem with lactonization process to afford a concise synthetic approach to both enantiomers of optically active 3-aryl phthalide.

On the scope of trimethylaluminium-promoted 1,2-additions of ArZnX reagents to aldehydes

Glynn, Daniel,Shannon, Jonathan,Woodward, Simon

supporting information; experimental part, p. 1053 - 1060 (2010/05/19)

A practical asymmetric 1, 2 addition of functionalised arylzinc hal ides to aromatic and aliphatic aldehydes is described by the use of amino alcohol catalysis in the presence of AlMe3. The process is simple to carry out, uses only commercially available reagents/ligands and provides moderate to good (80-96% ee) enantioselectivities for a wide range of substrates. Either commercial ArZnX reagents or those prepared in situ from low cost aryl bromides can be used. In the latter case electrophilic functional groups are tolerated (CO2Et, CN). The reaction relies on rapid exchange between ArZnX and AlMe3 to generate mixed organometallic species that lead to the formation of a key intermediate that is distinctly different from the classic "anti" transition states of Noyori. NMR monitoring and related experments have been used to probe the validity of the proposed selective transition state.

Chiral triphenylprolinol ligands for the efficient catalytic asymmetric arylation of aldehydes

Moro, Angelica Venturini,Tiekink, Edward R. T.,Zukerman-Schpector, Julio,Luedtke, Diogo S.,Correia, Carlos Roque D.

experimental part, p. 3696 - 3703 (2010/09/05)

The synthesis of new chiral amino alcohols by Heck arylation of an enecarbamate is described. These compounds were used as chiral ligands for the catalytic asymmetric arylation of aldehydes and can be easily recovered. Chiral, nonracemic diarylmethanols were obtained in high yields and enantioselectivities.

Chirality control in the enantioselective arylation of aromatic aldehydes catalyzed by cis-(1R,2S)-2-benzamidocyclohexanecarboxylic acid derived 1,3-aminoalcohols

Wang, Xiang-Bo,Kodama, Koichi,Hirose, Takuji,Yang, Xiao-Feng,Zhang, Guang-You

experimental part, p. 75 - 80 (2010/04/24)

A series of chiral 1,3-aminoalcohols derived from cis-(1R,2S)-2-benzamidocyclohexanecarboxylic acid were synthesized and applied to the enantioselective arylation of aromatic aldehydes. The reactions exhibited good yields (up to 90%) and moderate to high

Novel axially chiral phosphine ligand with a fluoro alcohol moiety for Rh-catalyzed asymmetric arylation of aromatic aldehydes

Morikawa, Satoshi,Michigami, Kyosuke,Amii, Hideki

supporting information; experimental part, p. 2520 - 2523 (2010/08/20)

A new chiral phosphine ligand (R)-1 possessing a fluoroalcohol moiety was prepared. The (R)-1-coordinated Rh(I) complex showed an excellent catalytic activity for asymmetric 1,2-addition of arylboronic acids to aldehydes to afford highly enantioenriched diarylmethanols. The fluoroalcohol moiety in ligand (R)-1 plays a pivotal role for the high enantioselectivity of the present Rh(I)-catalyzed transformation.

Acid and base stable diphenylmethanol derivatives and methods of use

-

Page/Page column 6; 15-16, (2008/12/08)

The invention provides compounds that are useful as linkers for solid phase synthesis and as protecting groups, and methods for producing and using the same.

Evaluation of enantiopure N-(ferrocenylmethyl)azetidin-2-yl(diphenyl) methanol for catalytic asymmetric addition of organozinc reagents to aldehydes

Wang, Min-Can,Zhang, Qing-Jian,Zhao, Wen-Xian,Wang, Xiao-Dan,Ding, Xue,Jing, Tao-Tao,Song, Mao-Ping

, p. 168 - 176 (2008/09/17)

(Chemical Equation Presented) A facile and practical approach to preparation of enantiopure N-(ferrocenylmethyl)azetidin-2-yl(diphenyl)-methanol was developed from cheap and easily available L-(+)-methionine. Synthetic highlights include the three-step, one-pot construction of the chiral azetidine ring and the development of an improved one-step procedure for the synthesis of the key intermediate L-2-amino-4-bromobutanoic acid. Enantiopure N-(ferrocenylmethyl)azetidin-2-yl(diphenyl)methanol was evaluated for catalytic asymmetric addition of organozinc reagents to aldehydes. The asymmetric ethylation, methylation, arylation, and alkynylation of aldehydes achieved enantioselectivity of up to 98.4%, 94.1%, 99.0%, and 84,6% ee, respectively, in the presence of a catalytic amount of chiral N-(ferrocenylmethyl)azetidin-2- yl(diphenyl)methanol. Our results demonstrated further that the four-membered heterocycle-based backbone was a good potential chiral unit for the catalytic asymmetric induction reaction, and the hindrance of the bulky ferrocenyl group, compared to a phenyl group, played an important role in the enantioselectivities. A possible transition for the catalytic asymmetric addition has been proposed on the basis of the crystal structure of the chiral ligand 3b including two HOAc molecules and previous studies.

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