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ethyl 2-benzylacrylate is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

20593-63-9

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20593-63-9 Usage

Synthesis Reference(s)

Synthesis, p. 406, 1984 DOI: 10.1055/s-1984-30854

Check Digit Verification of cas no

The CAS Registry Mumber 20593-63-9 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,0,5,9 and 3 respectively; the second part has 2 digits, 6 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 20593-63:
(7*2)+(6*0)+(5*5)+(4*9)+(3*3)+(2*6)+(1*3)=99
99 % 10 = 9
So 20593-63-9 is a valid CAS Registry Number.

20593-63-9SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 12, 2017

Revision Date: Aug 12, 2017

1.Identification

1.1 GHS Product identifier

Product name α-methylenebenzenepropanoic acid,ethyl ester

1.2 Other means of identification

Product number -
Other names 2-BENZYLACRYLIC ACID ETHYL ESTER

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:20593-63-9 SDS

20593-63-9Downstream Products

20593-63-9Relevant articles and documents

Palladium-Catalyzed Asymmetric Hydroesterification of α-Aryl Acrylic Acids to Chiral Substituted Succinates

Ji, Xiaolei,Shen, Chaoren,Tian, Xinxin,Dong, Kaiwu

, p. 8645 - 8649 (2021/10/25)

A palladium-catalyzed asymmetric hydroesterification of α-aryl acrylic acids with CO and alcohol was developed, preparing a variety of chiral α-substituted succinates in moderate yields with high ee values. The kinetic profile of the reaction progress revealed that the alkene substrate first underwent the hydroesterification followed by esterification with alcohol. The origin of the enantioselectivity was elucidated by density functional theory computation.

Phenyl Silicates with Substituted Catecholate Ligands: Synthesis, Structural Studies and Reactivity

Levernier, Etienne,Jaouadi, Khaoula,Zhang, Heng-Rui,Corcé, Vincent,Bernard, Aurélie,Gontard, Geoffrey,Troufflard, Claire,Grimaud, Laurence,Derat, Etienne,Ollivier, Cyril,Fensterbank, Louis

supporting information, p. 8782 - 8790 (2021/05/27)

While the generation of aryl radicals by photoredox catalysis under reductive conditions is well documented, it has remained challenging under an oxidative pathway. Because of the easy photo-oxidation of alkyl bis-catecholato silicates, a general study of phenyl silicates bearing substituted catecholate ligands has been achieved. The newly synthesized phenyl silicates have been fully characterized, and their reactivity has been explored. It was found that, thanks to the substitution of the catecholate moiety, notably with the 4-cyanocatecholato ligand, the phenyl radical could be generated and trapped. Computational studies provided a rationale for these findings.

Highly Selective Sub-Nanomolar Cathepsin S Inhibitors by Merging Fragment Binders with Nitrile Inhibitors

Schade, Markus,Merla, Beatrix,Lesch, Bernhard,Wagener, Markus,Timmermanns, Simone,Pletinckx, Katrien,Hertrampf, Torsten

, p. 11801 - 11808 (2020/11/26)

Pharmacological inhibition of cathepsin S (CatS) allows for a specific modulation of the adaptive immune system and many major diseases. Here, we used NMR fragment screening and crystal structure-aided merging to synthesize novel, highly selective CatS inhibitors with picomolar enzymatic Ki values and nanomolar functional activity in human Raji cells. Noncovalent fragment hits revealed binding hotspots, while the covalent inhibitor structure-activity relationship enabled efficient potency optimization.

Synthesis of α,β-Disubstituted Acrylates via Galat Reaction

Xavier, Tania,Condon, Sylvie,Pichon, Christophe,Le Gall, Erwan,Presset, Marc

, p. 6135 - 6139 (2019/08/28)

Galat reactions between aldehydes and substituted malonic acids half oxyester were found to be efficiently catalyzed by morpholine in refluxing toluene. This transformation allows the stereoselective synthesis of diverse α,β-disubstituted acrylates in moderate to good yields. This method constitutes an attractive alternative to existing methods in terms of scope and eco-compatibility.

Synthesis of β2,2-Amino Esters via Rh-Catalysed Regioselective Hydroaminomethylation

Cunillera, Anton,Ruiz, Aurora,Godard, Cyril

supporting information, p. 4201 - 4207 (2019/08/01)

The synthesis of β2,2-amino esters was successfully achieved via Rh-catalysed regioselective hydroaminomethylation of methyl methacrylate with secondary amines using the neutral precursor [Rh(acac)(CO)2]. In this process, the presence of molecular sieves revealed crucial in order to access the final amino ester. For the synthesis of products containing aniline derivatives, the use of the cationic precursor [Rh(COD)2]BF4 and MeCgPPh phosphine as ligand was necessary in a mixture of toluene/DCE as solvent. Effects of the steric and electronic properties of the amines were observed during this study. Interestingly, poisoning effect of CO in the hydrogenation of the imine intermediate was observed when benzyl amine was used. (Figure presented.).

A by 3 - phenyl -1 - methylacetylene preparation quickly disintegrating process method (by machine translation)

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Paragraph 0014-0016, (2019/07/10)

A by 3 - phenyl - 1 - propyne preparation quickly disintegrating process method, which belongs to the technical field of pharmaceutical intermediates. In the preparation quickly disintegrating in the process, intermediate benzyl acrylic acid yield and purity of the most important, this method first using 3 - phenyl - 1 - propyne as the raw material, in the palladium catalyst Pd2 (Dba)3 And the ligand dppp with ethyl carbonate under the catalysis of the reaction to the one-step synthesis of benzyl acrylic acid, its advantage lies in atmospheric pressure to complete the addition reaction, functional group tolerance is good, high efficiency, high purity, the production process is greatly simplified, and to obtain the target product preparation process of yield and purity than the traditional process much higher. The method has the advantages of greatly improve the productivity, reduce the cost, improve the safety, energy saving and the like, in accordance with the green reaction of modern chemical production requirement. (by machine translation)

Molecular tools that block maturation of the nuclear lamin A and decelerate cancer cell migration

Matralis, Alexios N.,Xanthopoulos, Dimitrios,Huot, Geneviève,Lopes-Paciencia, Stéphane,Cole, Charles,de Vries, Hugo,Ferbeyre, Gerardo,Tsantrizos, Youla S.

supporting information, p. 5547 - 5554 (2018/10/15)

Lamin A contributes to the structure of nuclei in all mammalian cells and plays an important role in cell division and migration. Mature lamin A is derived from a farnesylated precursor protein, known as prelamin A, which undergoes post-translational cleavage catalyzed by the zinc metalloprotease STE24 (ZPMSTE24). Accumulation of farnesylated prelamin A in the nuclear envelope compromises cell division, impairs mitosis and induces an increased expression of inflammatory gene products. ZMPSTE24 has been proposed as a potential therapeutic target in oncology. A library of peptidomimetic compounds were synthesized and screened for their ability to induce accumulation of prelamin A in cancer cells and block cell migration in pancreatic ductal adenocarcinoma cells. The results of this study suggest that inhibitors of lamin A maturation may interfere with cell migration, the biological process required for cancer metastasis.

Direct Access to Versatile Electrophiles via Catalytic Oxidative Cyanation of Alkenes

Gao, De-Wei,Vinogradova, Ekaterina V.,Nimmagadda, Sri Krishna,Medina, Jose M.,Xiao, Yiyang,Suciu, Radu M.,Cravatt, Benjamin F.,Engle, Keary M.

supporting information, p. 8069 - 8073 (2018/06/22)

Nucleophilic attack on carbon-based electrophiles is a central reactivity paradigm in chemistry and biology. The steric and electronic properties of the electrophile dictate its reactivity with different nucleophiles of interest, allowing the opportunity to fine-tune electrophiles for use as coupling partners in multistep organic synthesis or for covalent modification of proteins in drug discovery. Reactions that directly transform inexpensive chemical feedstocks into versatile carbon electrophiles would therefore be highly enabling. Herein, we report the catalytic, regioselective oxidative cyanation of conjugated and nonconjugated alkenes using a homogeneous copper catalyst and a bystanding N-F oxidant to furnish branched alkenyl nitriles that are difficult to prepare using existing methods. We show that the alkenyl nitrile products serve as electrophilic reaction partners for both organic synthesis and the chemical proteomic discovery of covalent protein ligands.

Switchable C-H Functionalization of N-Tosyl Acrylamides with Acryloylsilanes

Song, Shengjin,Lu, Ping,Liu, Huan,Cai, Sai-Hu,Feng, Chao,Loh, Teck-Peng

, p. 2869 - 2872 (2017/06/13)

A controllable Rh-catalyzed protocol to access alkylation and alkenylation-annulation of N-tosyl acrylamide with acryloyl silane is reported. In contrast to the directing group or catalyst-dependent divergent sp2 C-H alkylation/alkenylation, the intrinsic property of acryloylsilane allows the switchable reaction manifold, thereby affording either alkylation or annulation products with slight modification of the reaction conditions.

Compounding method for racecadotril intermediate

-

Paragraph 0023; 0024; 0026; 0027; 0029; 0030, (2017/05/03)

The invention discloses a compounding method for a racecadotril intermediate. The compounding method comprises the following steps: causing ethyl phenylpropiolate, dimethylamine and trioxymethylene react with each other, treating with hydrochloric acid to obtain benzyl ethyl acrylate, and then hydrolyzing under an alkaline condition, thereby obtaining benzyl acrylic acid. According to the compounding method disclosed by the invention, benzyl chloride with higher toxicity is replaced by ethyl phenylpropiolate, the compounding route is shortened, the production efficiency is increased, and thus the compounding method is suitable for industrial production.

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