Awesome and Easy Science Experiments about 5-Bromobenzothiophene

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We report the efficient carboxylation of bromides and triflates with K2CO3 as the source of CO2 in the presence of an organic photocatalyst in combination with a nickel complex under visible light irradiation at room temperature. The reaction is compatible with a variety of functional groups and has been successfully applied to the synthesis and derivatization of biologically active molecules. In particular, the carboxylation of unactivated cyclic alkyl bromides proceeded well with our protocol, thus extending the scope of this transformation. Spectroscopic and spectroelectrochemical investigations indicated the generation of a Ni0 species as a catalytic reactive intermediate.

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Benzothiophene – Wikipedia,
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Properties and Exciting Facts About 130-03-0

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Results of X-ray diffraction study and quantum-chemical calculations revealed that molecular conformation of thioindirubin molecule creates suitable conditions for formation of intramolecular C-H···O and S···O interactions. Analysis of molecular electrostatic potential (MEP) demonstrates existence of two areas of positive MEP (sigma-holes) in the outermost part of the sulfur atom on the continuation of the lines of the C-S bonds. One of these sigma-holes is oriented toward region of negative MEP around the oxygen atom of carbonyl group. Such situation corresponds to formation of sigma-hole or chalcogen bond. Existence of both types of bonding interactions is confirmed by topological analysis of electron density distribution using “Atoms in Molecules” (AIM) theory. Energies of the C-H···O hydrogen bond and the S···O sigma-hole bond derived from AIM and NBO theories are very close.

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Our Top Choice Compound: C8H4Br2S

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The syntheses of benzo-fused benzo[2,1-b:3,4-b’]dithiophenes 1 and benzo[2,1-b:3,4-b’:5,6-c?]trithiophenes 2 are described. The treatment of easily available 3,3?-bis(phenylethynyl)-2,2?-bithiophene derivatives 5a and 6 (via PdII-catalyzed alkynylation of the corresponding 3,3?-dibromo-2,2?-bithiophenes; see Scheme 1) with chlorotris(triphenylphosphine)rhodium(I) yields the corresponding cyclic rhodium complexes 7 (Scheme 2) which smoothly react with acetylenes and sulfur to give 1 and 2 in good yields (Schemes 3-5).

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Our Top Choice Compound: C9H7BrS

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New Advances in Chemical Research in 2021. Chemistry is a science major with cience and engineering. The main research directions are chemical synthesis, new energy materials, preparation and modification of special coatings. Product Details of 10243-15-9. Introducing a new discovery about 10243-15-9, Name is 3-Bromo-2-methylbenzo[b]thiophene

A general method for the synthesis of symmetrical or unsymmetrical bis(heteroaryl)maleimides by a one-pot procedure involving Suzuki-Miyaura cross-coupling sequence was developed on the basis of the reaction of 3,4-diiodo-1-benzyl-1H-pyrrole-2,5-dione with cyclic boronate esters using PdCl2(dppf) as the catalyst. Photochromic properties of the products were examined.

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Extracurricular laboratory:new discovery of C8H6OS

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Synthetic Route of 19301-35-0, Chemical Research Letters, May 2021. Reactions catalyzed within inorganic and organic materials and at electrochemical interfaces commonly occur at high coverage, causing turnover rates to depend strongly on interfacial structure. In a article, 19301-35-0, molcular formula is C8H6OS, introducing its new discovery.

Described herein are compounds, including pharmaceutically acceptable salts thereof, methods of making such compounds, pharmaceutical compositions comprising such compounds, and methods of using such compounds to treat, prevent or diagnose blood-based diseases, disorders or conditions.

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Extended knowledge of 6287-82-7

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Application of 6287-82-7, New research progress on 6287-82-7 in 2021. The appropriate choice of redox mediator can avoid electrode passivation and overpotential, which strongly inhibit the efficient activation of substrates in electrolysis. In a article, 6287-82-7, molcular formula is C8H4Br2S, introducing its new discovery.

Chirality at the central element of pentacoordinate systems can be controlled with two identical bidentate ligands. In such cases the topological Levi-Desargues graph for all the Berry pseudorotations (BPR, max. 20) reduces to interconnected inner and outer “circles” that represent the dynamic enantiomer pair. High enough barriers of the BPR crossovers between the two circles is all what is needed to ascertain chiral integrity. This is illustrated computationally and experimentally for the organosilicates 7 and 10 that carry besides a Me (a), Et (b), Ph (c), or F (d) group two bidentate 2-(phenyl)benzo[b]-thiophene or 2-(phenyl)naphthyl ligands, respectively. The enantiomers of tetraorganosilane precursor 9 could be separated by column chromatography. Their chiral integrity persisted on forming the silicates. CD spectra are reported for 10c. Fluoro derivative 10d is shown to have its electronegative F substituent in an equatorial position, is stable toward hydrolysis, and its enantiomers do not racemize at ambient temperatures, while those of 10c racemize slowly.

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The Shocking Revelation of 6287-82-7

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pi-Conjugated six-membered 1,4-dihydrophosphinines containing a heteroatom (Si, P, S) at the 4 position were synthesized and systematically studied. X-ray crystallographic analyses showed that the central six-membered heterocyclic rings are almost planar. The sum of the angles around the phosphorus atom increases by 23 from the trivalent phosphorus to the phosphonium atom in the thiaphosphinine system, which is consistent with the NMR spectroscopic studies. UV/Vis spectroscopy and theoretical calculations revealed that the communication between the phosphorus center and the benzothiophene moiety is enhanced by the incorporation of a sulfur atom into the molecular scaffold. The increased conjugation endows the thiaphosphinines with interesting emission properties. Theoretical calculations supported the postulation that the orbital coupling between the pi system and a sigma* orbital could be enhanced in the thiaphosphinine system, especially through a phosphonium center. Cyclic voltammetry studies revealed that the thiaphosphinine oxide, thiaphosphonium, and cis-diphosphinine oxide exhibit quasi-reversible reduction processes, which demonstrate that simple changes in the bridge heteroatoms help to efficiently tune the redox properties of the ladder-type 4-hetero-1,4-dihydrophosphinines.

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Discover the magic of the 130-03-0

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The reactions of 6-methoxybenzo[b]furan-3(2H)-one with 2-aryl-1,1- dicyanoethylenes and malononitrile or with aromatic aldehyde and two moles of malononitrile afford 2-amino-4-aryl-1,3-dicyano-7-methoxydibenzo[b,d]furans. The reactions of benzo[b]thiophen-3(2H)-one with 2-aryl-1,1-dicyanoethylenes or with aromatic aldehyde and one mole of malononitrile produce 2-amino-4-aryl-3-cyano-4H-benzothieno[3,2-b]pyrans.

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The Absolute Best Science Experiment for 63675-74-1

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The preparation of benzo[b]thiophenes by the acylation of alkoxy protected starting materials followed by demethylation using essentially odorless thiol compounds are provided herewith. Demethylation may be carried out in the same reaction vessel without isolation of the acylated, protected material.

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Simple exploration of 26018-73-5

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Application of 26018-73-5, Chemical Research Letters, May 2021. The transformation of simple hydrocarbons into more complex and valuable products via catalytic C–H bond functionalisation has revolutionised modern synthetic chemistry. In a article, 26018-73-5, molcular formula is C9H5ClO2S, introducing its new discovery.

2-<2-(Indol-2-yl)vinyl>-1-benzofuran and -benzothiophene compounds 6-13 and 18-22 with terminal amidinium or imidazolinium groups were synthesized; in their antileukemic activity in mice they surpass the isosteric 2,2′-vinylenebis(1-benzofuran) and -(benzo-thiophene) compounds.

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