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Isoquinolines (IQs) are an abundant feedstock, and N-formyl-1,2,3,4-tetrahydroisoquinolines (FTHIQs) are valuable fine chemicals and key intermediates. Herein, we report for the first time the Co0/ZnCl2-catalyzed direct N-formylation of IQs by using CO2 with H2 to produce FTHIQs. It was discovered that the Co catalyst and ZnCl2 worked synergistically in catalyzing the N-formylation reactions, and moderate to high yields of the desired products could be obtained, depending on the nature of the substrates. The Co0 catalyst could be reused at least five times without a notable decrease in activity. A possible reaction mechanism is proposed on the basis of control experiments.

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Reference:
Isoquinoline – Wikipedia,
Isoquinoline | C9H1546N – PubChem

 

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Biologically active compositions of matter comprising substituted isoquinolines and salts thereof. Certain of the compounds and their salts are novel. Acaricidal, fungicidal, herbicidal and insecticidal activity is demonstrated. In particular 3-chloro-5-acetamido-isoquinoline shows good activity as a selective pre-emergence herbicide, and 4-bromo-5-nitro-isoquinoline shows good fungicidal activity against Erysiphe graminis (wheat powdery mildew).

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Reference:
Isoquinoline – Wikipedia,
Isoquinoline | C9H1536N – PubChem

 

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5430-45-5, Name is 5-Chloroisoquinoline, belongs to isoquinoline compound, is a common compound. Product Details of 5430-45-5In an article, once mentioned the new application about 5430-45-5.

The present disclosure provides compounds and methods useful for inhibiting SARM1 and/or treating and/or preventing neurodegenerative disease or axonal degeneration. The provided SARM1 inhibitors may reduce or inhibit binding of NAD+ by SARM1. Alternatively, provided SARM1 inhibitors bind to SARM1 within a pocket comprising one or more catalytic residues (e.g., a catalytic cleft of SARM1).

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Reference:
Isoquinoline – Wikipedia,
Isoquinoline | C9H1533N – PubChem

 

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A silylene-bridged Ir dimer in situ generated from [Ir(coe)2Cl]2 and Et2SiH2 was found to catalyze the hydrosilylation of N-heteroaromatics to furnish dearomatized azacyclic products with high activity (up to 1000 TONs), excellent selectivity, and good functional group tolerance. The substrate scope was highly broad, including (iso)quinolines, substituted pyridines, pyrimidines, pyrazines, deazapurines, triazines, and benzimidazoles. Mechanistic studies such as a kinetic profile, rate-order assessment, and investigation of the electronic substituent effects on the initial rates were performed to access the detailed pathways. One pathway is proposed to involve an intramolecular insertion of the CN moiety of the substrates into the Ir-H bond of a resting species to form an Ir-amido silyl intermediate, followed by reductive elimination. The synthetic utility was proven by successful application to cinchona alkaloids, and facile post-synthetic transformations of the 1,2-dihydroquinoline products.

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Reference:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

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The nickel-catalyzed amination of aryl chlorides to form primary arylamines occurs with ammonia or ammonium sulfate and a well-defined single-component nickel(0) precatalyst containing a Josiphos ligand and an eta2-bound benzonitrile ligand. This system also catalyzes the coupling of aryl chlorides with gaseous amines in the form of their hydrochloride salts. Simple alternative: The title reaction, which results in primary arylamines, is catalyzed by well-defined single-component nickel(0) precatalysts containing a Josiphos ligand and an eta2-bound benzonitrile ligand. This system also catalyzes the coupling of aryl chlorides with gaseous amines in the form of their hydrochloride salts.

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Reference:
Isoquinoline – Wikipedia,
Isoquinoline | C9H1545N – PubChem

 

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The functionalization of aliphatic C-H bonds is both a major challenge and a desirable goal in organic synthesis. Here, we describe the successful arylation of unactivated alkanes with heteroarenes by using iridium polypyridyl complexes as the photocatalyst and persulfate as the HAT catalyst precursor under visible-light irradiation. This reaction features good functional group tolerance and broad scope with regard to both alkane and heteroarene substrates (37 examples), which allows direct access to alkyl-substituted N-heteroarenes, a key structural motif in natural products and bioactive molecules.

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Reference:
Isoquinoline – Wikipedia,
Isoquinoline | C9H1549N – PubChem

 

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C1-Benzoyl isoquinolines can be generated via a palladium(ii)-catalyzed C-C and C-O coupling of isoquinoline N-oxides with aromatic nitroalkenes. The reaction proceeds through remote C-H bond activation and subsequent intramolecular oxygen atom transfer (OAT). In this reaction, the N-O bond was designed as a directing group in the C-H bond activation as well as the source of an oxygen atom.

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Reference:
Isoquinoline – Wikipedia,
Isoquinoline | C9H1556N – PubChem

 

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The polarizable continuum model (PCM) analysis has been carried out using the B3LYP method with 6-311++G(d, p) basis set for 5-bromoisoquinoline (5-BIQ), 5-aminoisoquinoline (5-AIQ), 5-nitroisoquinoline (5-NIQ), 5-methylisoquinoline (5-MIQ), 5-chloroisoquinoline (5-CIQ) and 5-methoxyisoquinoline (5-MXIQ) in ten solvents with a wide range of dielectric constants. Inthis paper, we report electrostatic, dispersion and repulsive interaction components of Gibb’s free energy of solvation along with cavitation energies for these six systems. The induced dipole moments of these six compounds in ten solvents are calculated for the three solutes. The interaction energies of the systems are discussed in terms of dielectric constant, index of refraction and surface tension of the solvents. The influence of substituent at5-position of isoquinoline molecule on the solubility property is investigated.

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Reference:
Isoquinoline – Wikipedia,
Isoquinoline | C9H1555N – PubChem

 

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A visible-light-induced C?H cyanoalkylation of heteroarenes was described, in which cycloketone oximes were readily transformed into carbon-centered radicals with a terminal cyano-group via N?O/C?C bonds cleavage in one phtochemical step. This reaction protocol displayed a broad substrate scope of heterocycle compounds, and it provided a promising strategy for the installation of cyanoalkyl groups onto heteroarenes.

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Reference:
Isoquinoline – Wikipedia,
Isoquinoline | C9H1553N – PubChem

 

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In a search for inhibitors of epinephrine biosynthesis as potential therapeutic agents, a series of 13 ring-chlorinated 1,2,3,4-tetrahydroisoquinolines was prepared. These compounds were tested initially for their ability to inhibit rabbit adrenal phenylethanolamine N-methyltransferase (PNMT) in vitro. Enzyme-inhibitor dissociation constants, determined for the six most potent members of the series, indicated the following order of decreasing potency: 7,8-Cl2>6,7,8-Cl3>7-Cl~8-Cl>5,6,7,8-Cl4>5,7,8-Cl3. These compounds were subsequently examined for PNMT-inhibiting activity in intact rats and mice. 7,8-Dichloro-1,2,3,4-tetrahydroisoquinoline (SK&F 64139) was the most potent member of the series both in vitro and in vivo and is currently undergoing clinical investigation.

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Reference:
Isoquinoline – Wikipedia,
Isoquinoline | C9H1539N – PubChem