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2-(4-acetylphenyl)-2,2-difluoroacetic acid is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1308915-16-3

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1308915-16-3 Usage

Derivative of acetic acid

It is a modified form of acetic acid This means that the compound is structurally related to acetic acid, from which it is derived by making certain chemical modifications.

Acetylphenyl group

An acetylphenyl group is attached to the central carbon atom The acetylphenyl group is an organic functional group consisting of a phenyl ring with an acetyl (-COCH3) group attached to it.

Fluorine atoms

Two fluorine atoms are attached to the central carbon atom The presence of fluorine atoms in the compound can significantly affect its chemical properties, such as reactivity and polarity.

Pharmaceutical research

It is used in pharmaceutical research 2-(4-acetylphenyl)-2,2-difluoroacetic acid may be studied for its potential applications in the development of new drugs or therapies.

Potential drug development applications

It may have potential applications in drug development Due to its unique chemical structure, 2-(4-acetylphenyl)-2,2-difluoroacetic acid could be further explored for its possible use in creating new medications.

Unique chemical structure

The compound has a unique chemical structure The arrangement of atoms and functional groups in 2-(4-acetylphenyl)-2,2-difluoroacetic acid makes it distinct from other similar compounds, which may contribute to its potential pharmaceutical applications.

Safety precautions

It is important to handle this chemical with care and follow proper safety protocols Due to the potential hazards associated with 2-(4-acetylphenyl)-2,2-difluoroacetic acid, it is essential to take necessary precautions while working with it, such as wearing appropriate personal protective equipment and following established safety guidelines.

Check Digit Verification of cas no

The CAS Registry Mumber 1308915-16-3 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,3,0,8,9,1 and 5 respectively; the second part has 2 digits, 1 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 1308915-16:
(9*1)+(8*3)+(7*0)+(6*8)+(5*9)+(4*1)+(3*5)+(2*1)+(1*6)=153
153 % 10 = 3
So 1308915-16-3 is a valid CAS Registry Number.

1308915-16-3Relevant academic research and scientific papers

Copper-catalyzed cascade radical cyclization of alkynoates: Construction of aryldifluoromethylated coumarins

Chen, Zhiwei,Huang, Xiaoxiao,Tang, Wei,Zeng, Piaopiao

supporting information, p. 10223 - 10227 (2021/12/10)

A mild and simple method is reported for the construction of 3-difluoroarylmethylated coumarins using α,α-difluoroarylacetic acids as an easily handled difluoromethyl source in reaction with ester 3-arylpropiolates under the promotion of copper. The reaction involves a proposed radical-triggered domino decarboxylative aryldifluoromethylation/5-exo cyclization/ester migration process that directly forms Csp2-CF2Ar and C-C bonds with good functional group tolerance. This journal is

Generation of Axially Chiral Fluoroallenes through a Copper-Catalyzed Enantioselective β-Fluoride Elimination

Liu, Peng,Mai, Binh Khanh,Nafie, Jordan,O'Connor, Thomas J.,Toste, F. Dean

supporting information, p. 13759 - 13768 (2021/09/07)

Herein we report the copper-catalyzed silylation of propargylic difluorides to generate axially chiral, tetrasubstituted monofluoroallenes in both good yields (27 examples >80%) and enantioselectivities (82-98% ee). Compared to previously reported synthetic routes to axially chiral allenes (ACAs) from prochiral substrates, a mechanistically distinct reaction has been developed: the enantiodiscrimination between enantiotopic fluorides to set an axial stereocenter. DFT calculations and vibrational circular dichroism (VCD) suggest that β-fluoride elimination from an alkenyl copper intermediate likely proceeds through a syn-β-fluoride elimination pathway rather than an anti-elimination pathway. The effects of the C1-symmetric Josiphos-derived ligand on reactivity and enantioselectivity were investigated. Not only does this report showcase that alkenyl copper species (like their alkyl counterparts) can undergo β-fluoride elimination, but this elimination can be achieved in an enantioselective fashion.

Fe(III)-Catalyzed Decarboxylative C3-Difluoroarylmethylation of Coumarins with α,α-Difluoroarylacetic Acids

Chen, Zhiwei,Bai, Xiang,Sun, Jie,Xu, Yicheng

supporting information, p. 7674 - 7682 (2020/07/15)

A facile Fe(III)-catalyzed oxidative decarboxylative radical coupling reaction of α,α-difluoroarylacetic acids with coumarins has been developed. This transformation, which provides a series of C-3 difluoroarylmethylated coumarins containing various functional groups in moderate-to-good yields, features easily accessible starting materials and operational simplicity.

Controlling the cleavage of carbon-carbon bonds to generate α,α-difluorobenzyl carbanions for the construction of difluoromethylbenzenes

Khatri, Hari R.,Han, Changho,Luong, Erica,Pan, Xiaoliang,Adam, Amna T.,Alshammari, Maali D.,Shao, Yihan,Colby, David A.

, p. 11665 - 11675 (2019/10/02)

Controlling the cleavage of carbon-carbon bonds during a chemical reaction is a substantial challenge; however, synthetic methods that accomplish this objective produce valuable and often unexplored reactivity. We have designed a mild process to generate α,α-difluorobenzyl carbanions in the presence of potassium carbonate by exploiting the cleavage of C-C bonds during the release of trifluoroacetate. The initiating reagent is potassium carbonate, which represents an improvement over existing protocols that require a strong base. Fragmentation studies across substituted arenes and heteroarenes were conducted along with computational analyses to elucidate reactivity trends. Furthermore, the mildly generated α,α-difluorobenzyl carbanions from electron-deficient aromatics and heteroaromatic rings can react with aldehydes to create derivatives of difluoromethylbenzenes, which are valuable synthetic targets.

Silver-Catalyzed Decarboxylative Alkynylation of α,α-Difluoroarylacetic Acids with Ethynylbenziodoxolone Reagents

Chen, Fei,Hashmi, A. Stephen K.

supporting information, p. 2880 - 2882 (2016/07/06)

A decarboxylating alkynylation of α,α-difluoroarylacetic acids with ethynylbenziodoxolone reagents is reported. AgNO3 serves as the catalyst and K2S2O8 as the oxidant. A series of functional groups were tolerated, and moderate to good yields were obtained.

Easy Access to Difluoromethylene-Containing Arene Analogues through Palladium-Catalysed C–H Olefination

Shao, Changdong,Shi, Guangfa,Zhang, Yanghui

supporting information, p. 5529 - 5538 (2016/11/25)

An efficient palladium-catalysed ortho-C–H olefination of α,α-difluorophenylacetic acid derivatives using 8-aminoquinoline as a bidentate directing group has been developed. A range of olefinated arenes can thus be synthesized in a concise way. This reaction provides an easy and straightforward route to a panel of difluoromethylated arene analogues in moderate to good yields, with a satisfactory tolerance of common functional groups. Transformation of the products into a variety of other difluoromethylene-containing compounds demonstrates the utility of this method.

Method of manufacturing arom. defluoromethyl compd.

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Paragraph 0075, (2018/11/22)

PROBLEM TO BE SOLVED: To provide a method for easily producing an aromatic compound having a difluoromethyl group in high yield while using a reagent having low toxicity. SOLUTION: The method for producing the aromatic difluoromethyl compound includes reacting an aromatic difluoroacetic acid in the presence of a metal halide (especially potassium fluoride). COPYRIGHT: (C)2011,JPOandINPIT

Pd-catalyzed α-arylation of trimethylsilyl enolates of α,α-difluoroacetamides

Ge, Shaozhong,Arlow, Sophie I.,Mormino, Michael G.,Hartwig, John F.

supporting information, p. 14401 - 14404 (2014/12/11)

We report the arylation and heteroarylation of α,α-difluoro-α-(trimethylsilyl)acetamides with aryl and heteroaryl bromides catalyzed by an air- and moisture-stable palladacyclic complex containing P(t-Bu)2Cy as ligand. A broad range of electronically varied aryl and heteroaryl bromides underwent this transformation to afford α-aryl-α,α-difluoroacetamides in high yields. Due to the electrophilicity of the fluorinated amide, this palladium-catalyzed cross-coupling reaction provides a versatile platform to generate a range of α,α-difluoro carbonyl compounds, such as α-aryl-α,α-difluoroketones, -acetaldehydes, -acetates, and acetic acids, and difluoroalkyl derivatives, such as 2-aryl-2,2-difluoroethanols and -ethylamines, under mild conditions.

Catalytic decarboxylative fluorination for the synthesis of Tri- and difluoromethyl arenes

Mizuta, Satoshi,Stenhagen, Ida S.R.,O'Duill, Miriam,Wolstenhulme, Jamie,Kirjavainen, Anna K.,Forsback, Sarita J.,Tredwell, Matthew,Sandford, Graham,Moore, Peter R.,Huiban, Mickael,Luthra, Sajinder K.,Passchier, Jan,Solin, Olof,Gouverneur, Véronique

supporting information, p. 2648 - 2651 (2013/07/11)

Treatment of readily available α,α-difluoro- and α-fluoroarylacetic acids with Selectfluor under Ag(I) catalysis led to decarboxylative fluorination. This operationally simple reaction gave access to tri- and difluoromethylarenes applying a late-stage fluorination strategy. Translation to [18F]labeling is demonstrated using [ 18F]Selectfluor bis(triflate), a reagent affording [ 18F]tri- and [18F]difluoromethylarenes not within reach with [18F]F2.

METHOD FOR PRODUCING AROMATIC DIFLUOROACETIC ACID ESTER

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Page/Page column 7-8, (2012/09/10)

Disclosed is a method for producing a compound having a difluoromethylene group at an even lower cost and with excellent yield. The production method of the present invention is a method for producing an aromatic difluoroacetic acid ester, which comprises reacting an iodobenzene containing an electro attracting group and an α-silyl difluoroacetic acid ester in the presence of a metal halide.

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