The important role of 5-Bromobenzothiophene

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Ni-Catalyzed Reductive Cyanation of Aryl Halides and Phenol Derivatives via Transnitrilation

Herein, we report a Ni-catalyzed reductive coupling for the synthesis of benzonitriles from aryl (pseudo)halides and an electrophilic cyanating reagent, 2-methyl-2-phenyl malononitrile (MPMN). MPMN is a bench-stable, carbon-bound electrophilic CN reagent that does not release cyanide under the reaction conditions. A variety of medicinally relevant benzonitriles can be made in good yields. Addition of NaBr to the reaction mixture allows for the use of more challenging aryl electrophiles such as aryl chlorides, tosylates, and triflates. Mechanistic investigations suggest that NaBr plays a role in facilitating oxidative addition with these substrates.

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Reference:
Benzothiophene – Wikipedia,
Benzothiophene | C8H6S – PubChem

 

New explortion of 5-Bromobenzothiophene

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Discovery of novel, potent, isosteviol-based antithrombotic agents

Thrombosis is a pathological coagulation process and can lead to many serious thrombotic diseases. Here, we report a novel potent antithrombotic compound (6k) based on isosteviol with anticoagulant and antiplatelet activities. 6k selectively inhibited FXa (Ki = 0.015 muM) against a panel of serine proteases and showed excellent anticoagulant activity (significant prolongation of ex vivo PT and aPTT over the vehicle, p < 0.01). 6k also significantly inhibited ADP-induced platelet aggregation in rats relative to the vehicle (p < 0.01). Furthermore, 6k exhibited potent ex vivo and in vivo antithrombotic activity in rats relative to the vehicle (p < 0.01 and p < 0.0001, respectively). Novel structure 6k, with potent antithrombotic activity, is expected to lead a promising approach for the development of antithrombotic agents. Balanced chemical reaction does not necessarily reveal either the individual elementary reactions by which a reaction occurs or its rate law.Related Products of 4923-87-9. In my other articles, you can also check out more blogs about 4923-87-9

Reference:
Benzothiophene – Wikipedia,
Benzothiophene | C8H6S – PubChem

 

Awesome and Easy Science Experiments about C8H5BrS

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NOVEL COMPOUND AND ORGANIC ELECTROLUMINESCENCE DEVICE COMPRISING SAME

The present invention relates to a novel compound and an organic electroluminescence device including the same, and the compound according to the present invention may be used in an organic material layer, preferably a light-emitting layer of an organic electroluminescence device, thereby enhancing the light-emitting efficiency, driving voltage, lifespan, and the like of the organic electroluminescence device.

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Reference:
Benzothiophene – Wikipedia,
Benzothiophene | C8H6S – PubChem

 

A new application about 5-Bromobenzothiophene

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Synthesis of Substituted Benzothiophenes by Acid-Catalyzed Cyclization of Thiophenylacetals and Ketones

Benzothiophenes substituted at the 3 position with methyl or carboxymethyl and at the 5 position with methyl, methoxy, chloro, bromo and nitro were prepared by cyclization of thiophenyl-acetals and ketones using a suspension of polyphosphoric acid in refluxing chlorobenzene.The overall efficiency of this method is superior to literature procedures because of the lower temperature and the limited amount of PPA used.

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Reference:
Benzothiophene – Wikipedia,
Benzothiophene | C8H6S – PubChem

 

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Enzyme inhibitors cause a decrease in the reaction rate of an enzyme-catalyzed reaction by binding to a specific portion of an enzyme and thus slowing or preventing a reaction from occurring.Recommanded Product: 5-Bromobenzothiophene, such as the rate of change in the concentration of reactants or products with time.In a article, mentioned the application of 4923-87-9, Name is 5-Bromobenzothiophene, molecular formula is C8H5BrS

Ir-catalyzed cascade c-h fusion of aldoxime ethers and heteroarenes: Scope and mechanisms

A concise synthesis of phenanthridine derivatives is achieved by an iridium-catalyzed direct fusion of oxime ethers and heteroarenes, which is a successful example of a cascade C-H/C-H cross-coupling/cyclization strategy for polycyclic heteroaromatic synthesis. By subtle tuning of the reaction conditions, both benzo- and simple five-membered heteroarenes are suitable substrates under similar but different conditions. The key is the right choice of a silver salt. The detailed mechanistic study discloses that the first C-H/C-H cross-coupling step involves an [IrII]-[IrIV] catalytic cycle, which needs Ag2O as the oxidant. For the second cyclization step, a radical process takes control in the reactions of benzoheteroarenes and Ag2O is required; however, a C-H cyclization functions in the reactions of simple five-membered heteroarenes involving an [IrI]-[IrIII] catalytic cycle, and AgTFA is necessary.

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Reference:
Benzothiophene – Wikipedia,
Benzothiophene | C8H6S – PubChem

 

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Synthesis and Physicochemical Properties of Dibenzo[2,3- d:2?,3?- d?]anthra[1,2- b:5,6- b?]dithiophene (DBADT) and Its Derivatives: Effect of Substituents on Their Molecular Orientation and Transistor Properties

We have synthesized dibenzo[2,3-d:2?,3?-d?]anthra[1,2-b:5,6-b?]dithiophene (DBADT) and several derivatives bearing alkyl and phenyl groups at various positions. The optical and electrochemical properties of the synthesized compounds were investigated. All the fabricated OFET devices exhibited typical p-type behavior under ambient conditions, and diphenyl-substituted analogue-based OFET devices showed excellent mobility, as high as 0.66 cm2 V-1 s-1. The surface morphology and molecular orientation in thin films were also investigated using atomic force microscopy (AFM) and two-dimensional grazing incidence X-ray diffraction (2D-GIXD). It was found that the substituents and their positions affect the molecular orbitals, molecular orientation, and morphology of the thin films, producing different FET performance.

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Reference:
Benzothiophene – Wikipedia,
Benzothiophene | C8H6S – PubChem

 

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Construction of the Benzomesembrine Skeleton: Palladium(0)-Catalyzed Intermolecular Arylative Dearomatization of alpha-Naphthols and Subsequent Aza-Michael Reaction

A novel palladium(0)-catalyzed intermolecular arylative dearomatization of alpha-naphthols and subsequent aza-Michael reaction is described. Two adjacent stereocenters were constructed efficiently through consecutive arylative dearomatization and Michael addition reactions. By utilizing this method, structurally diverse benzomesembrine derivatives were synthesized with excellent yields and chemoselectivity. The benzomesembrine products were shown to undergo versatile functional-group transformations.

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Reference:
Benzothiophene – Wikipedia,
Benzothiophene | C8H6S – PubChem

 

New explortion of C8H5BrS

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Reference of 4923-87-9, 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, 4923-87-9, molcular formula is C8H5BrS, introducing its new discovery.

Ag(I)-C-H Activation Enables Near-Room-Temperature Direct alpha-Arylation of Benzo[ b]thiophenes

The first example of near-room-temperature alpha-arylation of benzo[b]thiophenes is reported. The discovery rests on the observation of a switch in alpha-/beta-regioselectivity at different loadings of Pd2(dba)3·CHCl3 in the coupling between benzo[b]thiophene and 4-iodotoluene. We show that this unprecedented regioselectivity switch is driven by a Ag(I)-mediated C-H activation at the alpha-C-H position, which becomes the dominant mode of reactivity at low concentrations of Pd. Competition experiments, kinetic studies, KIE, and D/H scrambling experiments have been carried out supporting this mechanism.

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Reference:
Benzothiophene – Wikipedia,
Benzothiophene | C8H6S – PubChem

 

Awesome Chemistry Experiments For 5-Bromobenzothiophene

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Palladacycle-catalyzed phosphonation of aryl halides in neat water

An efficient and generally applicable protocol for the palladacycle- catalyzed arylation of diisopropyl H-phosphonate in water was developed. The remarkable features of this C-P bond-forming reaction include wide substrate scope including the inactive electron-rich and electron-neutral aryl chlorides, the weak inorganic base KF instead of strong bases such as KOtBu or NaOtBu for the activation of C-Cl bond, and the addition of isopropanol to avoid the decomposition of diisopropyl H-phosphonate.

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Reference:
Benzothiophene – Wikipedia,
Benzothiophene | C8H6S – PubChem

 

Extracurricular laboratory:new discovery of 5-Bromobenzothiophene

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Synthesis of trans-2-Substituted Cyclopropylamines from alpha-Chloroaldehydes

Cyclopropylamines are prevalent in pharmaceuticals and agrochemicals. Herein, we report the synthesis of trans-2-substituted cyclopropylamines in high diastereoselectivity from readily available alpha-chloroaldehydes. The reaction proceeds via trapping of an electrophilic zinc homoenolate with an amine followed by ring closure to generate the cyclopropylamine. We have also observed that cyclopropylamine cis/trans-isomerization occurs in the presence of zinc halide salts and that this process can be turned off by the addition of a polar aprotic cosolvent.

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Reference:
Benzothiophene – Wikipedia,
Benzothiophene | C8H6S – PubChem