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Note that a catalyst decreases the activation energy for both the forward and the reverse reactions and hence accelerates both the forward and the reverse reactions.Synthetic Route of 2879-20-1, you can also check out more blogs about2879-20-1

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A highly efficient method for the synthesis of 1,2,3-triaroylindolizines has been established from readily available methyl ketones and pyridines in the presence of iodine. This reaction also examplified the self-division of labor strategy in convergent domino synthesis.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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The prevalence of solvent effects has motivated developing quantitative kinetic, spectroscopic, and theoretical assessments of solvent structures and their interactions with reaction intermediates and transition states. Electric Literature of 2879-20-1, In a article, mentioned the application of 2879-20-1, Name is 1-(2,3-Dihydrobenzo[b][1,4]dioxin-6-yl)ethanone, molecular formula is C10H10O3

The present application provides substituted purine derivatives and related compounds of the formulas shown. These compounds are useful as inhibitors of HSP90, and hence in the treatment of related diseases. (Formulae) Z1-Z3 , Xa-Xc, X2 , 324, Y and R are as defined in the specification

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

Our Top Choice Compound: C10H10O3

Balanced chemical reaction does not necessarily reveal either the individual elementary reactions by which a reaction occurs or its rate law.category: benzodioxans. This is the end of this tutorial post, and I hope it has helped your research about 2879-20-1

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Cathepsin X is a cysteine carboxypeptidase that is involved in various physiological and pathological processes. In particular, highly elevated expression and activity of cathepsin X has been observed in cancers and neurodegenerative diseases. Previously, we identified compound Z9 (1-(2,3-dihydrobenzo[b][1,4]dioxin-6-yl)-2-((4-isopropyl-4H-1,2,4-triazol-3-yl)thio)ethan-1-one) as a potent and specific reversible cathepsin X inhibitor. Here, we have explored the effects of chemical variations to Z9 of either benzodioxine or triazol moieties, and the importance of the central ketomethylenethio linker. The ketomethylenethio linker was crucial for cathepsin X inhibition, whereas changes of the triazole heterocycle did not alter the inhibitory potencies to a greater extent. Replacement of benzodioxine moiety with substituted benzenes reduced cathepsin X inhibition. Overall, several synthesized compounds showed similar or improved inhibitory potencies against cathepsin X compared to Z9, with IC50 values of 7.1 muM?13.6 muM. Additionally, 25 inhibited prostate cancer cell migration by 21%, which is under the control of cathepsin X.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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An I2/KOH synergistically promoted direct ring-opening aroylation of benzothiazoles with aryl ketones has been discovered. Aryl ketones were seen to act as carbonyl sources to construct 2-acylbenzothiazoles. This reaction could provide an example for the convergent integration of self-labor domino sequences based on an in situ cross-trapping strategy.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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The catalyzed pathway has a lower Ea, but the net change in energy that results from the reaction is not affected by the presence of a catalyst. In my other articles, you can also check out more blogs about 2879-20-1

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The invention relates to compounds of the formula STR1 wherein R1 is hydrogen, acyl, lower-alkyl or –CHO, –CH2 OR10, –COR7 or OR13 ; R2, R3 and R4 are, independently, hydrogen, lower-alkyl, lower-alkoxy or halogen; R5 and R6 are, independently, hydrogen or lower-alkyl; R7 is hydroxy, lower-alkoxy or NR8 R9 ; R8 and R9 are, independently, hydrogen or lower-alkyl; X and Y are, independently, >CR14 R15, –O–, –S–, >SO, >SO2 or >NR18 ; R10 and R18 are, independently, hydrogen, lower-alkyl or acyl; M is –C(R11)=C(R12)–, –CONH– or –NH–CO–; R11, R12, R14 and R15 are, independently, hydrogen or lower-alkyl, R13 is hydrogen, lower-alkoxycarbonyl or lower- alkyl, which can be substituted by amino, mono-alkylamino, di-alkylamino, morpholino, thiomorpholino or piperazino; and n is 1, 2, 3 or 4; with the proviso that at least one of X and Y comprises a hetero atom and n is 1, 3 or 4 when X contains a hetero atom, Y is >C(CH3)2 and R1 is lower-alkyl or –CH2 OR10 or –COR7, or a salt of a compound of formula I, when R1 is carboxy. The compounds of formula I are useful in the treatment of prophylaxis of neoplasms, dermatoses and ageing of the skin.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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The prevalence of solvent effects has motivated developing quantitative kinetic, spectroscopic, and theoretical assessments of solvent structures and their interactions with reaction intermediates and transition states. name: 1-(2,3-Dihydrobenzo[b][1,4]dioxin-6-yl)ethanone, In a article, mentioned the application of 2879-20-1, Name is 1-(2,3-Dihydrobenzo[b][1,4]dioxin-6-yl)ethanone, molecular formula is C10H10O3

DMSO is used as a substrate, DMSO is a solvent, three-component one-pot reaction, and aromatic and aliphatic substituted 1, 2, 3 – thiadiazole are obtained under the promotion of cupric chloride and iodide . the invention discloses a preparation method of the aryl and alkyl thiadiazole containing the aryl group and the alkyl thiadiazole by using methyl ketone, p-toluenesulfonyl hydrazide, potassium thiocyanate. The method provided by the invention has very excellent substrate compatibility, especially for the aliphatic substrate, and enriches substrate diversity synthesized 1, 2, 3 – thiadiazole. (by machine translation)

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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Application of 2879-20-1,The appropriate choice of redox mediator can avoid electrode passivation and overpotential, which strongly inhibit the efficient activation of substrates in electrolysis. 2879-20-1, Name is 1-(2,3-Dihydrobenzo[b][1,4]dioxin-6-yl)ethanone,introducing its new discovery.

The application of a Mor-DalPhos/palladium catalyst system in the one-pot, multicomponent assembly of substituted indoles from ortho-chlorohaloarenes, alkyl ketones (including acetone), and primary amines is reported. The described protocols offer improved substrate scope in all three reaction components, under more mild conditions and without the need for an additional drying agent. Also reported are the first examples of such multicomponent reactions where all reactants are combined at the start of the reaction, without the need for inert atmosphere reaction conditions.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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The invention relates to 2 – acyl – 3 – amino indole compound synthesizes the field, discloses the preparation of the formula (I) of the structure shown in the 2 – acyl – 3 – amino-indole compounds of the method, the method of the invention the use of a simple “one-pot” reaction, mild condition the operation is simple, omitted-containing compounds and ago in the prior art intermediate purification step, the method increases the possibility of the actual production of the application. (by machine translation)

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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Selective introduction of an iodine atom at the alpha-carbonyl position in various aryl alkyl ketones was effectively achieved by reaction of target molecules with elemental iodine in the presence of N-F reagents. The best results were obtained by using 1-chloromethyl-4-fluoro-1,4-diazoniabicyclo[2.2.2]octane bis(tetra-fluoroborate) (Selectfluor F-TEDA-BF4) as the iodination mediator and methanol as the solvent. Despite a strongly activated aromatic ring, iodomethyl derivatives were thus exclusively obtained from the corresponding hydroxy and methoxy substituted acetophenone derivatives, 3-acetylindole and 2-acetylbenzofuran, while the alpha-iodo derivative was the main product in the case of iodination of 1,5,6,7-tetrahydro-4H-indol-4-one and 6,7-dihydro-1-benzothiophene-4(5H)-one.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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(Chemical Equation Presented) Easily modified: the electronic and steric properties of a ruthenium catalyst highly active for C-H bond activation (see scheme) can be modified by fine-tuning the ligand. This makes this catalytic system very versatile as it allows functionalization of a variety of substrates. The catalyst is generated in situ from a stable and easily available ruthenium(II) source.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem