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Chlorination with equimolar POCl3 can be efficiently achieved not only for hydroxypyrimidines, but also for many other substrates such as 2-hydroxy-pyridines,-quinoxalines, or even-amides. The procedure is solvent-free and involves heating in a sealed reactor at high temperatures using one equivalent of pyridine as base. It is suitable for large scale (multigram) batch preparations.

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Related Products of 2213-63-0, New Advances in Chemical Research in 2021. The transformation of simple hydrocarbons into more complex and valuable products via catalytic C–H bond functionalisation has revolutionised modern synthetic chemistry. 2213-63-0, Name is 2,3-Dichloroquinoxaline, molecular formula is C8H4Cl2N2. In a article,once mentioned of 2213-63-0

Three new alpha,alpha?-diimine ligands were synthesized based on condensation of 1,10-phenanthroline-5,6-dione with 1,2-phenylenediamine derivatives using different approaches. All compounds were fully characterized by IR, 1H and 13C NMR, UV-visible, and MS spectroscopies. We report the first example of a dipyrido[3,2-f:2?,3?-h]quinoxalino[2,3-b]quinoxaline, which exhibits a strong absorption at 430 nm and an interesting electrochemical behavior. These new molecules may have biological potential and are of synthetic and technological importance.

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2-Hydrazino-3-chloroquinoxaline 2 was prepared and reacted with active methylene compounds, potassium thiocyanate, carbon disulfide, phenylisothiocyanate, acetic acid, ethyl chloroformate, triethyl orthoformate, and Lawessen’s reagent (LR) to give a new class of fused quinoxalines 4-16, respectively. Also, 2,3-dihydrazinoquinoxaline 3 was prepared and reacted with carbon disulfide, phenyl isothiocyanate, and triethyl orthoformate to give the corresponding di[1,2,4] triazolo-[4,3-a:3?,4?-c]-quinoxalines 17-19, respectively. Reaction of 3 with LR gave the corresponding di[1,2,4,3] triazophospholo[4,5-a:5?,4?-c]quinoxaline-1,6-dithione (20). It was found that all synthesized compounds exhibit antimicrobial activity and that compound 20 had a broad spectrum of activity. Copyright Taylor & Francis Group, LLC.

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New Advances in Chemical Research, May 2021. The transformation of simple hydrocarbons into more complex and valuable products via catalytic C–H bond functionalisation has revolutionised modern synthetic chemistry.Safety of 2,3-Dichloroquinoxaline, In a article, mentioned the application of 2213-63-0, Name is 2,3-Dichloroquinoxaline, molecular formula is C8H4Cl2N2

The static and dynamic properties of the phosphorescent triplet states of quinoxaline and 2,3-disubstituted derivatives in hexane have been studied at 1.4 K using the methods of optically detected magnetic resonance.In addition, the absorption and phosphorescence excitation spectra have also been measured to attain the information about the low lying excited states.A systematic comparison has been made for the purpose of examining the effect of substitution.A significant enhancement of the pumping rates for the y spin sublevel observed in the chlorine-substituted derivatives is concluded to be due to the additional indirect process of intersystem crossing which occurs from S1 of n,?* to T1 passing through the intermediate triplet state of ?,?*.A detailed discussion on the observed phosphorescence spectra originating from the three sublevels has achieved a satisfactory success in understanding the mechanisms responsible for the radiative decay processes.It is concluded that the mechanisms due to vibronic coupling with closely lying n,?* triplet states are of little importance in the systems studied here.

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Three series of novel fused nitrogen heterocyclic systems such as 1,2,4-triazolo[1,5-a] pyridines (5-7 and 9), pyrido[1,2-b][1,2,4]triazines (10, 11, 13 and 15), and pyrido[1,2-b][1,2,4]triazepines (17, 18, 20 and 22) linked with a chromone moiety were synthesized from the key intermediate 1,6-diamino-(6-chloro-4-oxo-4H-chromen-3-yl)-2-oxo-1,2-dihydropyridine-3, 5-dicarbonitrile (4) with some electrophilic reagents. The structures of the novel compounds were established by elemental analyses and spectral data. All the products were also screened in vitro for their antimicrobial activity. Compounds 7, 9 and 15 showed the highest activities when compared with the reference drugs.

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New Advances in Chemical Research, May 2021. The prevalence of solvent effects in heterogeneous catalysis in condensed media has motivated developing theoretical assessments of solvent structures and their interactions with reaction intermediates. Computed Properties of C8H4Cl2N2, We’ll be discussing some of the latest developments in chemical about CAS: 2213-63-0, name is 2,3-Dichloroquinoxaline. In an article,Which mentioned a new discovery about 2213-63-0

The synthesis and characterization of 14 monometallic derivatives of quinoline, quinoxaline, quinazoline and tetraazolo<1,5-A>quinoline and a bimetallic derivative of quinoxaline are reported. These species were prepared in 11 to 88% isolated yields by metathesis reactions between NaFp or NaFp? (where Fp = (eta5 – C5H5)Fe(CO)2 and Fp? = (eta5 – indenyl)Fe(CO)2 ) and the appropriate chlorine substituted polyaromatic azines. These reactions are highly regioselective and generally produce a single organometallic product having the organometallic substituent(s) bonded to the more highly activated azine ring. The structures of three representative examples were confirmed by their X-ray crystal structures, which are reported for the title complexes 4-[(eta5-cyclopentadienyl)irondicarbonyl]-7-chloroquinoline (C16H10ClFeNO2; a = 7.608(1)A, b = 12.006(1)A, c = 15.664(1)A, V = 1431A3; orthorhombic; P212121; Z =4), 2-[(eta5-cyclopentadienyl)irondicarbonyl]-3-chloroquinoxaline (C15H9ClFeN2O2; a = 15.291(3) A, b = 6.561(2) A, c = 14.541(4) A, beta = 106.891(21), V= 1395.9A3; monoclinic; P21/c; Z = 4), and 2-[(eta5-indenyl)irondicarbonyl]-3-chloroquinoxaline (C19H11ClFeN2O2; a = 19.131(2)A, b = 6.688(1)A, c = 13.515(2) A, beta= 101.569(11), V = 1694.1 A3; monoclinic; P21/c; Z = 4). The bimetallic quinoxaline derivative 2,3-[(C5H5)2Fe2(CO)4]-quinoxaline has orrto-substituted organometallic groups and the spectroscopic data suggest that it has an unusual structure in solution, perhaps involving bridging cyclopentadienyl and carbonyl ligands.

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2,3-Dichloroquinoxaline has been cyclo-condensed with 2-aminopyridine, 2-aminothiazoles, 2-aminothiadiazoles, 2-aminobenzimidazole and 2-mercaptobenzimidazole to give the corresponding novel heterocyclic systems.The reaction of 2,3-dichloroquinoxaline with thioacetamide has also been studied.

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Provided herein are polymorph E, a mixed DMAC/toluene solvate and a DMSO solvate of N-(3-{[(2Z)-3-[(2-chloro-5- methoxyphenyl)amino]quinoxalin-2(1H)-ylidene]sulfamoyl}phenyl)-2- methylalaninamide.

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Toll-like receptor (TLR) 7 and 8 agonists are potential vaccine adjuvants, since they directly activate APCs and enhance Th1-driven immune responses. Previous SAR investigations in several scaffolds of small molecule TLR7/8 activators pointed to the strict dependence of the selectivity for TLR7 vis–vis TLR8 on the electronic configurations of the heterocyclic systems, which we sought to examine quantitatively with the goal of developing heuristics to define structural requisites governing activity at TLR7 and/or TLR8. We undertook a scaffold-hopping approach, entailing the syntheses and biological evaluations of 13 different chemotypes. Crystal structures of TLR8 in complex with the two most active compounds confirmed important binding interactions playing a key role in ligand occupancy and biological activity. Density functional theory based quantum chemical calculations on these compounds followed by linear discriminant analyses permitted the classification of inactive, TLR8-active, and TLR7/8 dual-active compounds, confirming the critical role of partial charges in determining biological activity.

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A protocol for nickel-catalyzed hydrocarboxylation of alkynes with formic acid was developed. The protocol allowed for highly efficient synthesis of acrylic acid with a TON of up to 7700.

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