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A novel methodology for the decarboxylative Suzuki-Miyaura-type coupling has been established. This process uses iodine or a bromine source as both the decarboxylation mediator and the terminal oxidant, thus avoiding the need for stoichiometric amounts of transition metal salts previously required. Our new protocol allows for the construction of valuable biaryl architectures through the coupling of (hetero)aromatic carboxylic acids with arylboronic acids. The scope of this decarboxylative Suzuki reaction has been greatly diversified, allowing for previously inaccessible non-ortho-substituted aromatic acids to undergo this transformation. The procedure also benefits from low catalyst loadings and the absence of stoichiometric transition metal additives.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2769O – PubChem

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A new thiadiazole ligand, N-ethyl-5- (benzo[b]thien-2-yl-)-1,3,4-thiadiazol-2-amine (BTH), was prepared from 3-methyl-1-benzofuran-2-carboxylic acid and N-ethylhydrazinecarbothioamide precursors. Corresponding silver(I) complex, tetrakis(N-ethyl-5-(benzo[b]thien-2-yl-)-1,3,4-thiadiazol-2-amine)silver(I) nitrate [Ag2(BTH)4](NO3)2 (1), was prepared. The structures of BTH and 1 were characterized by 1H-NMR, 13C-NMR, FT-IR, elemental analysis and HR-MS techniques. Furthermore, molecular structure of 1 was illuminated by X-ray crystallography. Owing to strong anagsotic interaction, crystal structure of the complex revealed an intriguing asymmetric monomer unit even with two same ligands in 2:1 metal-to-ligand stoichiometry. Photoluminescence properties of the complex were investigated by solid and solution media emission measurements. Excited and emissive state behavior of the complex was further analyzed by quantum chemical TD-DFT calculations and natural transition orbital (NTO) analyses.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2731O – PubChem

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Application of 24673-56-1, Chemistry is the experimental science by definition. We want to make observations to prove hypothesis. For this purpose, we perform experiments in the lab. 24673-56-1, Name is 3-Methylbenzofuran-2-carboxylic acid,introducing its new discovery.

We report the Pd(II)-catalyzed, bidentate directing group (BDG)-assisted arylation and successive arylation/intramolecular amidation of gamma-C(sp3)-H bonds. The Pd(II)-catalyzed BDG-assisted C-H activation and functionalization of the beta-C(sp3)-H bonds of carboxylic acids are well documented, but only a few reports are available that deal with the BDG-directed functionalization of the gamma-C(sp3)-H bonds. Various 3-methylthiophene/furan-2-carboxamides (1a-e) were derived from their corresponding carboxylic acids and bidentate directing groups. These compounds were then used as substrates to investigate the arylation and successive arylation/intramolecular amidation of the gamma-C(sp3)-H bonds. The gamma-C(sp3)-H arylation arose from the Pd(II)-catalyzed reactions of these compounds with aryl iodides with reaction periods of 4-24 h (except a few reactions which required 36 or 48 h). Notably, these reactions led to the construction of various unsymmetrical diarylmethane scaffolds, such as thiophene/furan-based arylheteroarylmethanes (3-6). Prolonging the reaction period to 48-70 h led to successive gamma-C(sp3)-H arylation/intramolecular amidation and the construction of both C-C and C-N bonds. Accordingly, these reactions led to the construction of new classes of pyrrolidone-ring annulated thiophene/furan-based heterocyclic scaffolds (e.g., 4,5-dihydro-6H-thieno[2,3-c]pyrrol-6-ones (8), 4,5-dihydro-6H-furo[2,3-c]pyrrol-6-ones (10), and 1-phenyl-1,2-dihydro-3H-benzo[4,5]thieno[2,3-c]pyrrol-3-ones (12)), and notably, compounds 8, 10, and 12 resemble the skeletons of 3-phenylisoindolin-1-ones.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2766O – PubChem

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Methods for the conversion of aliphatic acids to alkyl halides have progressed significantly over the past century, however, the analogous decarboxylative bromination of aromatic acids has remained a longstanding challenge. The development of efficient methods for the synthesis of aryl bromides is of great importance as they are versatile reagents in synthesis and are present in many functional molecules. Herein we report a transition metal-free decarboxylative bromination of aromatic acids. The reaction is applicable to many electron-rich aromatic and heteroaromatic acids which have previously proved poor substrates for Hunsdiecker-type reactions. In addition, our preliminary mechanistic study suggests that radical intermediates are not involved in this reaction, which is in contrast to classical Hunsdiecker-type reactivity. Overall, the process demonstrates a useful method for producing valuable reagents from inexpensive and abundant starting materials.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2770O – PubChem

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Chemistry is traditionally divided into organic and inorganic chemistry. HPLC of Formula: C10H8O3, The former is the study of compounds containing at least one carbon-hydrogen bonds.In a patent,Which mentioned a new discovery about 24673-56-1

Benzofuran derivatives and benzofuransare presented as scaffolds in complex molecules and have attracted much attention and prevalent interest due to their interesting biological activity. They also exist in several numbers of naturally occurring compounds and exhibiting biological activity. In this review, we will try to underscore the reactivity of benzofurans through comprehension and giving a full perspective to the readers.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2745O – PubChem

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Disclosed herein are antibacterial compounds that accumulate in Gram-negative bacteria, methods of preparing the compounds, and methods of using the compounds to inhibit or kill microbes, and methods of treating microbial infections, such as Gram-negative bacterial infections. Compounds selected for conversion to potential Gram-negative antibacterial compounds were identified based on compounds having low globularity and low flexibility. Amine substituents were then strategically added to the selected compounds to provide compounds having antibacterial activity against Gram-negative bacteria.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2691O – PubChem

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Several analogs of the alpha-tropanyl esters of 2-(4-chlorophenoxy)butyric acid (SM21) and 2-phenylthiobutyric acid (SM32), endowed with potent antinociceptive and cognition enhancing activity, were synthesized, aimed at obtaining more potent and safe drug candidates. Variation of the acyl moiety, as well as the conformational restriction of atropine to give the alpha-tropanyl ester of 2,3-dihydrobenzofurane-3-carboxylic acid (18), practically abolished activity. In the case of 18, the antimuscarinic activity was also severely affected by the conformation restrain. On the contrary, conformational restriction of phenoxybutyric and phenylthiobutyric acid derivatives to give the alpha-tropanyl ester of 2,3-dihydro-benzofurane-2-carboxylic acid and 2,3-dihydro-benzothiophene-2-carboxylic acid, afforded potent analgesic drugs that unfortunately were too toxic to be reliable drug candidates. A series of related esters of benzofurane-3-carboxylic acid and benzothiophene-3-carboxylic acid were also studied and found to be potent but toxic analgesics.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2772O – PubChem

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Reference of 24673-56-1, The reaction rate of a catalyzed reaction is faster than the reaction rate of the uncatalyzed reaction at the same temperature.24673-56-1, Name is 3-Methylbenzofuran-2-carboxylic acid, molecular formula is C10H8O3. In a Article,once mentioned of 24673-56-1

Prompted by the various biological activities of carboxamides and benzofurans, a series of substituted benzofuran-2-carboxamide derivatives (10a-10j and 11a-11j) were synthesized and evaluated for anti-plant pathogenic fungal activity. Some of the novel benzofuran-2-carboxamide derivatives exhibited good antifungal activity against four plant pathogenic fungi. Compound 10g showed good antifungal activity at 200 mg L-1 and is hoped to be a potential lead compound.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2786O – PubChem

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A novel and efficient synthesis of sulfones was developed via a silver-promoted decarboxylative sulfonylation reaction between aromatic carboxylic acids and sodium sulfinates for the first time. The approach features operational simplicity and good functional group compatibility and uses readily available starting materials. Furthermore, mechanistic studies reveal that the decarboxylative sulfonylation reaction is likely to proceed via a radical mechanism.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2789O – PubChem

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Synthetic Route of 24673-56-1, Catalysts function by providing an alternate reaction mechanism that has a lower activation energy than would be found in the absence of the catalyst. In some cases, the catalyzed mechanism may include additional steps.In a article, 24673-56-1, molcular formula is C10H8O3, introducing its new discovery.

The present invention provides for compounds that inhibit the activity of an anti-apoptotic Bcl-2 family member Myeloid cell leukemia-1 (Mcl-1) protein. The present invention also provides for pharmaceutical compositions as well as methods for using compounds for treatment of diseases and conditions (e.g., cancer) characterized by the over-expression or dysregulation of Mcl-1 protein.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2695O – PubChem