Archives for Chemistry Experiments of Quinoxaline-2,3(1H,4H)-dione

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One of the major reasons for studying chemical kinetics is to use measurements of the macroscopic properties of a system, SDS of cas: 15804-19-0, such as the rate of change in the concentration of reactants or products with time.In a article, mentioned the application of 15804-19-0, Name is Quinoxaline-2,3(1H,4H)-dione, molecular formula is C8H6N2O2

Crystal structure, infrared spectra and density functional theory study on 2,3-diketo-benzopiperazine dimer

2,3-Diketo-benzopiperazine, which exists as dimeric form in its crystal structure has been synthesized. The calculated results on the dimer at B3LYP/6-31G* level show that the average strength of the double hydrogen bonds is of medium-grade. Natural bond orbital analyses have been performed. The predicted harmonic vibration frequencies support the experimental values. The thermodynamic properties of the dimer at different temperatures have been calculated and the change of Gibbs free energy for the aggregation from the monomer to the dimer DeltaGr = -30.86 kJ/mol at 298.15 K, which implies the spontaneous process of the dimer formation.

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Quinoxaline | C8H6N420 | ChemSpider

Discovery of 148231-12-3

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Simple access to sol-gel precursors bearing fluorescent aromatic core units

Di-, tri-, and tetrathienyl-substituted polycyclic aromatic fluorophores were prepared from different aryldi-, aryltri-, or aryltetrahalides by a simple and fast Suzuki coupling. The reaction was optimized for the synthesis of the desired materials on multigram scale. The coupled products were converted into the corresponding iodides through iodination with N-iodosuccinimide. The iodides turned out to be versatile starting materials for applications, such as periodic mesoporous organosilica syntheses. They were converted into a variety of new trimethoxysilyl arenes by using a very efficient Pd-mediated C-Si cross-coupling, which was also extended to the corresponding thienyl bromides by using a dimeric PdI catalyst. All compounds were characterized by 1H NMR, 13C NMR, 29Si NMR, and ATR-IR spectroscopy and HRMS.

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Quinoxaline | C8H6N2028 | ChemSpider

Extracurricular laboratory:new discovery of 6344-72-5

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Ruthenium(II) eta6-arene complexes containing a dinucleating ligand based on 1,8-naphthyridine

Ruthenium arene complexes, [(eta6-p-cymene)2Ru2(L)Cl2](PF6)2 [3b, L = 2, 7-bis(di-2-pyridinyl)-1,8-naphthyridine] and [(eta6-p-cymene)Ru(L?)Cl](PF6) [4, L? = tri(2-pyridinyl)amine], were synthesized and characterized by spectroscopic and analytical techniques. The molecular structure of [(eta6-p-cymene)2Ru2(L)Cl2]Cl2 (3a) was further determined by single-crystal X-ray analysis. The use of these ruthenium complexes as pre-catalysts for oxidative coupling of 1,2-diols/1,2-aminoalcohol with o-phenylenediamines leading to quinoxalines was investigated. Complex 3b appeared to be a good catalyst for this transformation.

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More research is needed about 5-Nitroquinoxaline

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Synthesis of Indole Derivatives from 2-Bromoanilines by a Palladium-assisted Reaction

In the presence of palladium(II) acetate, 2-bromoanilines readily react with enamines such as N-vinylpyrrolidone or alpha-piperidinostyrene to produce indole derivatives.

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The important role of 18514-76-6

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One-pot synthesis of polyhydropyrido[1,2-a]indoles and tetracyclic quinazolinones from 2-arylindoles using copper-mediated oxidative tandem reactions

We developed facile one-pot methods for the transformation of 2-arylindoles to polyhydropyrido[1,2-a]indoles and tetracyclic quinazolinones. The copper-catalyzed oxidation of 2-arylindoles to C-acylimines followed by aza-Diels?Alder reactions or oxidative ring-expansion reactions afforded significant polycyclic heterocycles.

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Quinoxaline | C8H6N924 | ChemSpider

Extracurricular laboratory:new discovery of 5,8-Dibromoquinoxaline

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Related Products of 148231-12-3, Chemistry is the science of change. But why do chemical reactions take place? Why do chemicals react with each other? The answer is in thermodynamics and kinetics.In a document type is Patent, and a compound is mentioned, 148231-12-3, 5,8-Dibromoquinoxaline, introducing its new discovery.

New Annelated pyrrolecarboxylic boron complex and its manufacturing method compd. (by machine translation)

PROBLEM TO BE SOLVED: near infrared light more efficient use of the available for absorbing near-infrared light of a long wavelength region to provide a new light-absorbing material. SOLUTION: represented by the general formula I […] deriv.. (Ar 1 and Ar 2 each independently, and may have a substituent hereoaryl group; R a-R d each independently, a hydrogen atom or a substituent group may have a straight-chain or branched-chain carbon number 1-8 alkoxy group; B 1 and B 2 are each independently hydrogen or […] group may have a substituent selected from the group consisting of a base, however, B 1 and B 2 least one and may have a substituent […] group) selected drawing: no (by machine translation)

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Discovery of 67074-63-9

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Heteroaryl amide derivatives and their use as TGR5 agonist application (by machine translation)

The invention belongs to the field of medical technology, in particular of formula (I) indicated by the heteroaryl amide TGR5 agonist compound, its pharmaceutically acceptable salt, ester, its stereoisomers or prodrugs, wherein R1 , R2 , R3 , R4 , R5 , R6 , R7 , R8 , R9 , R10 , R11 , X1 , X2 , X3 And Y as defined in the specification; the invention also relates to methods of preparing such compounds, pharmaceutical formulations, pharmaceutical composition and use of these compounds in treating and/or preventing and TGR5 active regulation in the use of the related diseases. (by machine translation)

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Quinoxaline | C8H6N421 | ChemSpider

Can You Really Do Chemisty Experiments About 1448-87-9

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Iron catalyzed cross coupling reactions of aromatic compounds

A process for the production of compounds Ar?R1 by means of a cross-coupling reaction of an organometallic reagent R1?M with an aromatic or heteroaromatic substrate Ar?X catalyzed by one or several iron salts or iron complexes as catalysts or pre-catalysts, present homogeneously or heterogeneously in the reaction mixture. This new invention exhibits substantial advantages over established cross coupling methodology using palladium- or nickel complexes as the catalysts. Most notable aspects are the fact that (i) expensive and/or toxic nobel metal catalysts are replaced by cheap, stable, commercially available and toxicologically benign iron salts or iron complexes as the catalysts or pre-catalysts, (ii) commercially attractive aryl chlorides as well as various aryl sulfonates can be used as starting materials, (iii) the reaction can be performed under ?ligand-free? conditons, and (iv) the reaction times are usually very short.

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New explortion of 5-Nitroquinoxaline

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Access to Quaternary Stereogenic Centers via Rhodium(III)-Catalyzed Annulations between 2-Phenylindoles and Ketenes

Rh(III)-catalyzed C-H activation of arenes and mild oxidative [4 + 2] annulative coupling with ketenes have been realized. The uniquely high reactivity of the C(3) of 2-phenylindoles was successfully utilized to facilitate the reductive elimination process, leading to efficient synthesis of cyclic products with a quaternary carbon stereocenter.

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Some scientific research about 2213-63-0

Sometimes chemists are able to propose two or more mechanisms that are consistent with the available data. Computed Properties of C8H4Cl2N2, If a proposed mechanism predicts the wrong experimental rate law, however, the mechanism must be incorrect.Welcome to check out more blogs about 2213-63-0, in my other articles.

One of the major reasons for studying chemical kinetics is to use measurements of the macroscopic properties of a system, Computed Properties of C8H4Cl2N2, such as the rate of change in the concentration of reactants or products with time.In a article, mentioned the application of 2213-63-0, Name is 2,3-Dichloroquinoxaline, molecular formula is C8H4Cl2N2

A One-pot Facile Synthesis of 2,3-Dihydroxyquinoxaline and 2,3-Dichloroquinoxaline Derivatives Using Silica Gel as an Efficient Catalyst

An efficient one-pot reaction has been developed for the synthesis of 2,3-dichloroquinoxaline derivatives 3a?n. The reaction was performed in two steps via a silica gel catalyzed tandem process from o-phenylenediamine and oxalic acid, followed by addition of phosphorus oxychloride (POCl3). A variety of 2,3-dichloroquinoxalines have been obtained in good to excellent overall yields. Eight known compounds 3a?3h were characterized by IR, 1H-NMR, and mass spectroscopies. Compounds 3i?3n without spectroscopic data were characterized by IR, 1H-NMR, 13C-NMR, and mass spectroscopies.

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Quinoxaline – Wikipedia,
Quinoxaline | C8H6N1612 | ChemSpider