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6-fluoro-2-(4-fluorophenyl)quinoline is a synthetic organic compound characterized by its quinoline core, which is a tricyclic aromatic system. This particular derivative features a fluorine atom at the 6th position and a 4-fluorophenyl group attached at the 2nd position. The presence of fluorine atoms can significantly influence the compound's electronic properties, potentially enhancing its reactivity or stability. This chemical is often used in the synthesis of pharmaceuticals and agrochemicals due to its ability to modulate the activity of target molecules. Its structure and properties make it a valuable building block in medicinal chemistry, where it can be further functionalized to create a variety of biologically active compounds.

2647-29-2

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2647-29-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 2647-29-2 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,6,4 and 7 respectively; the second part has 2 digits, 2 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 2647-29:
(6*2)+(5*6)+(4*4)+(3*7)+(2*2)+(1*9)=92
92 % 10 = 2
So 2647-29-2 is a valid CAS Registry Number.

2647-29-2Downstream Products

2647-29-2Relevant academic research and scientific papers

Coupling Radical Homoallylic Expansions with C-C Fragmentations for the Synthesis of Heteroaromatics: Quinolines from Reactions of o-Alkenylarylisonitriles with Aryl, Alkyl, and Perfluoroalkyl Radicals

Evoniuk, Christopher J.,Gomes, Gabriel Dos Passos,Ly, Michelle,White, Frankie D.,Alabugin, Igor V.

, p. 4265 - 4278 (2017/04/27)

Selective addition of radicals to isonitriles can be harnessed for initiating reaction cascades designed to overcome the stereoelectronic restrictions on homoallylic ring expansion in alkyne reactions and to develop a new general route for the preparation of N-heteroaromatics. This method utilizes alkenes as synthetic equivalents of alkynes by coupling homoallylic ring expansion to yield the formal "6-endo" products with aromatization via stereoelectronically assisted C-C bond scission. Computational analysis of the homoallyic expansion potential energy surface reveals that the indirect 5-exo/3-exo/retro-3-exo path is faster than the direct 6-endo-trig closure, revealing the general exo-preference for the cyclization processes.

Coupling cyclizations with fragmentations for the preparation of heteroaromatics: Quinolines from o-alkenyl arylisocyanides and boronic acids

Evoniuk, Christopher J.,Ly, Michelle,Alabugin, Igor V.

supporting information, p. 12831 - 12834 (2015/08/06)

Stereoelectronic restrictions on homoallylic ring expansion in alkyne cascades can be overcome by using alkenes as synthetic equivalents of alkynes in reaction cascades that are terminated by C-C bond fragmentation. Implementation of this approach using Mn(iii)-mediated reaction of o-alkenyl isocyanides and boronic acids leads to efficient synthesis of substituted quinolines.

Synthetic utility of propylphosphonic anhydridedmso media: An efficient one-pot three-component synthesis of 2-arylquinolines

Narasimhamurthy, Kereyagalahally H.,Chandrappa, Siddappa,Kumar, Kothanahally S. Sharath,Swaroop, Toreshettahally R.,Rangappa, Kanchugarakoppal S.

supporting information, p. 1073 - 1075 (2013/09/24)

Propylphosphonic anhydride (T3P?)DMSO-mediated onepot three-component synthesis which provides 2-arylquinolines in a single step from benzyl alcohols, anilines, and ethyl vinyl ether by the modified Povarov reaction has been demonstrated. T3P?DMSO is a mild and low-toxic peptide coupling agent and an easy to handle reagent for bulk reactions at room temperature.

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