09/27/21 News The Shocking Revelation of C2H8N2O4

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O-ARYLKETOXIMES .3. OBTAINING 3-(4′-METHYL)-PHENYL-5-NITRO-BENZISOXAZOLE FROM O-[2-(4′-METHYL)-BENZOYL-4-NITRO]-PHENYL-KETOXIMES

Refluxing O-[2-(4′-methyl)-benzoyl-4-nitro]-phenyl-ketoximes (3) in ethanol saturated with hydrocloric acid, besides ketones 5,3-(4′-methyl)-phenyl-5-nitro-benzisoxazole 4 was obtained instead of the corresponding benzofurans 6. The formation of 4 is possible by spliting the oximic bond of 3 into O-[2-(4’methyl)-benzoyl-4-nitro]-phenylhydroxylamine 8 and ketones 5, under acid catalysis. Further on, the arylhydroxylamine 8 turns into 4 by cyclization, a new intramolecular oximic bound being formed.

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Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

9/16 News Discover the magic of the C2H8N2O4

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Chemical Research Letters, May 2021. In classical electrochemical theory, both the electron transfer rate and the adsorption of reactants at the electrode control the electrochemical reaction. In an article, author is FERRIS, DC, once mentioned the application of 1113-38-8, Name is Ammonium oxalate, molecular formula is C2H8N2O4, molecular weight is 124.1, MDL number is MFCD00013308, category is benzisoxazole. Now introduce a scientific discovery about this category, Application of 1113-38-8.

RATE OF DECARBOXYLATION OF BENZISOXAZOLE-3-CARBOXYLATE IONS AS A PROBE OF SOLVATION IN BIOLOGICAL AND OTHER MEDIA

The influence of solvent donor-acceptor properties and polarity on the rates of decarboxylation of benzisoxazole-3-carboxylate ions is analyzed with the unified solvation model. When the dissolved species is a separated ion pair, solvent polarity decreases the rate. When an equilibrium exists between an ion pair and the dissociated ion pair, solvent polarity and donor strength increase the rate by increasing the extent of dissociation. Hydrogen bonding to the carboxylate functionality causes a significant decrease in rate. When using this probe to measure the solvation properties of solvents, micelles, polymers, or biological assemblies, these different effects must be sorted out to interpret the influence of the medium on the observed rate. The unified solvation model provides a means of sorting out these various contributions.

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Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

9/15 News Decrypt The Mystery Of C2H8N2O4

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Protective effect of zonisamide, an antiepileptic drug, against transient focal cerebral ischemia with middle cerebral artery occlusion-reperfusion in rats

Purpose: The antiepileptic effects of zonisamide (ZNS) have been well documented experimentally and clinically. The purpose of this study was to examine whether ZNS reduces cerebral damage after transient focal ischemia in rats. Methods: Ischemia was induced by a transient occlusion of the left middle cerebral artery (MCA) with a 3-0 nylon monofilament for 90 min. Neurological evaluation was performed by measuring the event of neurological deficit of the contralateral forepaw and hindpaw at 10 min and 1 day after MCA occlusion (MCAo). Brain infarct size was determined by measuring triphenyltetrazonium chloride-negative stained area of the serial brain sections 1 day after MCAo. Results: The pre-or postischemic treatment with ZNS [(10-100 mg/kg p.o.), 30 min before and 4 h after or 15 min and 4 h after the occlusion] markedly reduced cerebral damage in the ipsilateral hemisphere and the neurological deficit induced by transient ischemia. The reducing effect on the damage was observed in the cortical and subcortical regions. Preischemic treatment with carbamazepine (CBZ 60 mg/kg p.o. twice 30 min before and 4 h after MCAo) tended to reduce the cerebral damage and neurological deficit, but the lower dose (20 mg/kg p.o. twice) did not. Valproate (VPA 1,000 mg/kg p.o. twice) also had no effect. Conclusions: ZNS at the anticonvulsant dose, unlike CBZ and VPA, ameliorated the brain infarction and the event of neurological deficit after transient focal cerebral ischemia. These data suggest that ZNS has therapeutic potential in protecting against ischemic cerebral damage, such as stroke.

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14/9/2021 News Can You Really Do Chemisty Experiments About C2H8N2O4

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Chemical engineers ensure the efficiency and safety of chemical processes, adapt the chemical make-up of products to meet environmental or economic needs, and apply new technologies to improve existing processes. 1113-38-8, Name is Ammonium oxalate, molecular formula is C2H8N2O4, Category: Benzisoxazole, belongs to benzisoxazole compound, is a common compound. In a patnet, author is Guo, Sheng, once mentioned the new application about 1113-38-8.

Enantioselective Synthesis of beta-Amino Acid Derivatives Enabled by Ligand-Controlled Reversal of Hydrocupration Regiochemistry

A Cu-catalyzed enantioselective hydroamination of alpha,beta-unsaturated carbonyl compounds for the synthesis of beta-amino acid derivatives was achieved through ligand-controlled reversal of the hydrocupration regioselectivity. While the hydrocupration of alpha,beta-unsaturated carbonyl compounds to form alpha-cuprated species has been extensively investigated, we report herein that, in the presence of an appropriate ancillary chiral ligand, the opposite regiochemistry can be observed for cinnamic acid derivatives, leading to the delivery of the copper to the beta-position. This copper can react with an electrophilic aminating reagent, 1,2-benzisoxazole, to provide enantioenriched beta-amino acid derivatives, which are important building blocks for the synthesis of natural products and bioactive small molecules.

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Sep 2021 News Extended knowledge of C2H8N2O4

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Photoexcited o-nitro chromophore in o-nitrobenzylic systems has led to the design and development of many useful photochromic systems such as photolabile protecting groups, photoresists, for controlled release of bioactive compounds, as well as efficient photosynthons giving direct access to many important molecular systems that are otherwise difficult to obtain. This brief review cites a few examples showing the photochemistry of 2-nitrodiphenylalkanes and alkenes, which find useful in the synthesis of 2,1-benzisoxazole derivatives, dibenzo(c,f)-(1,2)diazepin-N-oxides and N,N-dioxides, acridones, isatogens etc., that are present in many pharmaceutical drugs.

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Chemical Research Letters, May 2021. In classical electrochemical theory, both the electron transfer rate and the adsorption of reactants at the electrode control the electrochemical reaction. In an article, author is Manetsch, R, once mentioned the application of 1113-38-8, Name is Ammonium oxalate, molecular formula is C2H8N2O4, molecular weight is 124.1, MDL number is MFCD00013308, category is benzisoxazole. Now introduce a scientific discovery about this category, Related Products of 1113-38-8.

The cyclic ammonium cation 5 and its guanidinium analogue 4 are inhibitors of tocopherol cyclase. Monoclonal antibodies were raised against protein conjugates of the haptens 1-3 and screened for catalytic reactions with alkene 8, a short chain analogue of the natural substrate phytyl-hydroquinone 6, and its enol ether analogues 10a,b. Antibody 16E7 raised against hapten 3 was found to catalyze the hydrolysis of Z enol ether 10a to form hemiacetal 12 with an apparent rate acceleration of k(cat)/k(uncat) = 1400. Antibody 16E7 also catalyzed the elimination of Kemp’s benzisoxazole 59. The absence of cyclization in the reaction of enol ether 10a was attributed to the competition of water molecules for the oxocarbonium cation intermediate within the antibody binding pocket. Hapten and reaction design features contributing to this outcome are discussed. Antibody 16E7 provides the first example of a carboxyl group acting both as an acid in an intrinsically acid-catalyzed process and as a base in an intrinsically base-catalyzed process, as expected from first principles. In contrast to the many examples of general-acid-catalyzed processes known to be catalyzed by catalytic antibodies, the specific-acid-catalyzed cyclization of phytyl-hydroquinone 6 or its analogue 8 still eludes antibody catalysis.

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Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

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Chemical Research Letters, May 2021. In classical electrochemical theory, both the electron transfer rate and the adsorption of reactants at the electrode control the electrochemical reaction. In an article, author is Manetsch, R, once mentioned the application of 1113-38-8, Name is Ammonium oxalate, molecular formula is C2H8N2O4, molecular weight is 124.1, MDL number is MFCD00013308, category is benzisoxazole. Now introduce a scientific discovery about this category, Related Products of 1113-38-8.

The cyclic ammonium cation 5 and its guanidinium analogue 4 are inhibitors of tocopherol cyclase. Monoclonal antibodies were raised against protein conjugates of the haptens 1-3 and screened for catalytic reactions with alkene 8, a short chain analogue of the natural substrate phytyl-hydroquinone 6, and its enol ether analogues 10a,b. Antibody 16E7 raised against hapten 3 was found to catalyze the hydrolysis of Z enol ether 10a to form hemiacetal 12 with an apparent rate acceleration of k(cat)/k(uncat) = 1400. Antibody 16E7 also catalyzed the elimination of Kemp’s benzisoxazole 59. The absence of cyclization in the reaction of enol ether 10a was attributed to the competition of water molecules for the oxocarbonium cation intermediate within the antibody binding pocket. Hapten and reaction design features contributing to this outcome are discussed. Antibody 16E7 provides the first example of a carboxyl group acting both as an acid in an intrinsically acid-catalyzed process and as a base in an intrinsically base-catalyzed process, as expected from first principles. In contrast to the many examples of general-acid-catalyzed processes known to be catalyzed by catalytic antibodies, the specific-acid-catalyzed cyclization of phytyl-hydroquinone 6 or its analogue 8 still eludes antibody catalysis.

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Reference:
Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

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Chemical Research Letters, May 2021. In classical electrochemical theory, both the electron transfer rate and the adsorption of reactants at the electrode control the electrochemical reaction. In an article, author is Sagud, I., once mentioned the application of 1113-38-8, Name is Ammonium oxalate, molecular formula is C2H8N2O4, molecular weight is 124.1, MDL number is MFCD00013308, category is benzisoxazole. Now introduce a scientific discovery about this category, Name: Ammonium oxalate.

Heterocyclic compounds are a very important part of organic chemistry. Oxazole is a five-membered heterocycle with nitrogen and oxygen atoms in the ring. Oxazole is part of complex structures used in medicinal chemistry, pharmacology, and material chemistry. In the excited state, the oxazole ring can rearrange itself via several reaction mechanisms. In this paper, an extensive literature overview is given for photoisomerisations (phototranspositions) in oxazole, isoxazole, and benzisoxazole ring. A literature review is also given for phototransformations of the ring in the presence of oxygen (photooxygenation reactions), as well as for photoformation of the oxazole ring.

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Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

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A tailor-made catalytically active polymer catalyzing the benzisoxazole isomerization is described. Kinetic studies carried out in water/ethanol (3:1, v/v) at room temperature, showed a rate acceleration (k(MIP)/k(control)) of 7.2-fold compared to the control polymer. The imprinted polymer exhibits Michaelis-Menten kinetics with a K-m of 0.484 mM and a k(cat) of 0.205 min(-1). Compared with the uncatalyzed reaction, a rate enhancement ((k(cat)/K-m)/k(uncat)) of 4 x 10(4) fold was obtained. Substrate selectivity, accessible binding site analysis, dissociation constant determination, and inhibition study were also performed.

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The title benzisoxazole (3) is prepared isomerically pure by condensation of 2-(diethoxymethyl)cyclohexanone with hydroxylamine hydrochloride.

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Benzisoxazole – Wikipedia,
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