The important role of 3326-71-4

Compounds in my other articles are similar to this one(2-Furoic hydrazide)Product Details of 3326-71-4, you can compare them to see their pros and cons in some ways,such as convenient, effective and so on.

So far, in addition to halogen atoms, other non-metallic atoms can become part of the aromatic heterocycle, and the target ring system is still aromatic.Prabakaran, G.; Manivarman, S.; Bharanidharan, M. researched the compound: 2-Furoic hydrazide( cas:3326-71-4 ).Product Details of 3326-71-4.They published the article 《Catalytic synthesis, ADMET, QSAR and molecular modeling studies of novel chalcone derivatives as highly potent antioxidant agents》 about this compound( cas:3326-71-4 ) in Materials Today: Proceedings. Keywords: chalcone derivative antioxidant agent. We’ll tell you more about this compound (cas:3326-71-4).

A series of (E)-3-(3-(5-chlorothiophen-2-yl)-1-(furan-2-carbonyl)-2,3-dihydro-1H-pyrazol-4-yl)-1-(substituted)prop-2-en-1-one derivatives 5a-c was synthesized from the reaction of 3-(5-chlorothiophen-2-yl)-1-(furan-2-carbonyl)-2,3-dihydro-1H-pyrazole-4-carbaldehyde (2) with various substituted acetophenes by the use of TiO2-ZnS in ethanol under reflux conditions. All are structurally supported by IR spectrum and the basic testing and screening, and find that compounds 5a are potential antioxidants for their in vitro-antioxidant activity against DPPH. The results in vitro were compared with the results of the mol. docking, ADMET, QSAR and bioactivity study and it was found that the results were observed in good correlations with in vitro anti-oxidant results in silicon binding affinities. The anal. of mol. dockings revealed the interactions between the synthesized ligands and protein tyrosine kinase (2HCK) amino acid residues and has a strong hydrogen connexion to this enzyme.

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Benzisoxazole – Wikipedia,
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Why do aromatic interactions matter of compound: 610-09-3

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The three-dimensional configuration of the ester heterocycle is basically the same as that of the carbocycle. Compound: cis-Cyclohexane-1,2-dicarboxylic acid(SMILESS: O=C([C@H]1[C@@H](C(O)=O)CCCC1)O,cas:610-09-3) is researched.Quality Control of 6-Aminonicotinamide. The article 《The ionization of aliphatic dicarboxylic acids in water》 in relation to this compound, is published in Journal of Solution Chemistry. Let’s take a look at the latest research on this compound (cas:610-09-3).

Potentiometric, calorimetric, and dilatometric data on the ionization of several saturated dicarboxylic acids in water at 25° are reported. A correlation is attempted between structure and thermodn. evidences for the two dissociation stages of the diacids considered, in particular in terms of the propensity toward intramol. H bond formation of some singly ionized species.

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Benzisoxazole – Wikipedia,
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Interesting scientific research on 3326-71-4

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Most of the natural products isolated at present are heterocyclic compounds, so heterocyclic compounds occupy an important position in the research of organic chemistry. A compound: 3326-71-4, is researched, SMILESS is O=C(C1=CC=CO1)NN, Molecular C5H6N2O2Journal, Russian Journal of Organic Chemistry called Modification of Monocarboxylic Acid Hydrazides with Tropylium Salts, Author is Yunnikova, L. P.; Esenbaeva, V. V., the main research direction is hydrazide tropylium salt modification.Application In Synthesis of 2-Furoic hydrazide.

Nicotinic, isonicotinic, and furan-2-carboxylic acid hydrazides reacted with 2 equiv of tropylium perchlorate or tetrafluoroborate to give the corresponding N’N’-di(cyclohepta-2,4,6-trein-1-yl) derivatives as a result of electrophilic substitution of both hydrogen atoms in the primary amino group. The reaction of furan-2-carbohydrazide with an equimolar amount of tropylium salt gave N’-(cyclohepta-2,4,6-trien-1-yl)furan-2-carbohydrazide.

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Benzisoxazole – Wikipedia,
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Extracurricular laboratory: Synthetic route of 610-09-3

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The chemical properties of alicyclic heterocycles are similar to those of the corresponding chain compounds. Compound: cis-Cyclohexane-1,2-dicarboxylic acid, is researched, Molecular C8H12O4, CAS is 610-09-3, about Zinc(II) and cadmium(II) complexes with mixed 1,3-di(1H-imidazol-4-yl)benzene and cyclohexanedicarboxylate ligands: Synthesis, structure and property, the main research direction is preparation polymeric zinc cadmium cyclohexanedicarboxylate imidazolylbenzene complex; crystal structure polymeric zinc cadmium cyclohexanedicarboxylate imidazolylbenzene complex; thermal decomposition polymeric zinc cadmium cyclohexanedicarboxylate imidazolylbenzene complex; luminescence polymeric zinc cadmium cyclohexanedicarboxylate imidazolylbenzene complex.Application In Synthesis of cis-Cyclohexane-1,2-dicarboxylic acid.

Eight new coordination polymers Zn(L)(cis-1,2-CHDA)| (1), Zn(L)(trans-1,3-CHDA)|·2.5H2O (2), Zn(L)(cis-1,3-CHDA)|·H2O (3), Cd(L)(cis-1,2-CHDA)|·3H2O (4), Cd2(L)2(cis-1,2-CHDA)2|·3H2O (5), Cd(L)(cis-1,3-CHDA)|·H2O (6), Cd(L)(cis-1, 4-CHDA)|·5H2O (7) and Cd(L)(cis-1,4-CHDA)| (8) were synthesized by reactions of corresponding metal salt with 1,3-di(1H-imidazol-4-yl)benzene (L) and different carboxylic acids such as 1,2-cyclohexanedicarboxylic acid (1,2-H2CHDA), 1,3-cyclohexanedicarboxylic acid (1,3-H2CHDA) and 1,4-cyclohexanedicarboxylic acid (1,4-H2CHDA), resp. The results of crystal structure anal. revealed that 4, 7 and 8 are chains, 1, 3, 5 and 6 are (3)-connected 2D networks with Point (Schlaefli) symbol of (63), while 2 is a (3,3)-connected 2D network with Point (Schlaefli) symbol of (44,62). Thermal stability and photoluminescence of the complexes were investigated. Furthermore, DFT calculations were carried out on 2-5, and 7 and 8 to discuss the temperature dependent reaction of the complexes.

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Chemical Properties and Facts of 610-09-3

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The reaction of an aromatic heterocycle with a proton is called a protonation. One of articles about this theory is 《Improved synthesis of cis-Δ4-tetrahydrophthalic anhydride and cis-hexahydrophthalic acid》. Authors are Jenkins, Edward F.; Costello, Edward J..The article about the compound:cis-Cyclohexane-1,2-dicarboxylic acidcas:610-09-3,SMILESS:O=C([C@H]1[C@@H](C(O)=O)CCCC1)O).COA of Formula: C8H12O4. Through the article, more information about this compound (cas:610-09-3) is conveyed.

Maleic anhydride (1 mole) in 150 ml. C6H6, cooled to 5°, 54 g. liquid (CH2:CH)2 added, and the mixture heated to 115° (within 15 min. the temperature rises to 145° and the pressure to 11 atm.) and allowed to stand overnight, gives 90% cis-Δ4-tetrahydrophthalic anhydride (I), m. 103-4°. I (30.4 g.) in 150 ml. AcOH, hydrogenated 0.5 hr. over 200 mg. Pt oxide at room temperature and 4.5 atm., and the mixture boiled with H2O, gives 90% cis-hexahydrophthalic acid, m. 190-1°.

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Benzisoxazole – Wikipedia,
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Analyzing the synthesis route of 610-09-3

Although many compounds look similar to this compound(610-09-3)Application In Synthesis of cis-Cyclohexane-1,2-dicarboxylic acid, numerous studies have shown that this compound(SMILES:O=C([C@H]1[C@@H](C(O)=O)CCCC1)O), has unique advantages. If you want to know more about similar compounds, you can read my other articles.

The reaction of an aromatic heterocycle with a proton is called a protonation. One of articles about this theory is 《Synthesis of bicyclo[4.2.0]octane-7,8-diol, a derivative of “”cycloöctatetraene dichloride””》. Authors are Cope, Arthur C.; Herrick, Elbert C..The article about the compound:cis-Cyclohexane-1,2-dicarboxylic acidcas:610-09-3,SMILESS:O=C([C@H]1[C@@H](C(O)=O)CCCC1)O).Application In Synthesis of cis-Cyclohexane-1,2-dicarboxylic acid. Through the article, more information about this compound (cas:610-09-3) is conveyed.

Butadiene (0.6-0.8 l./min.) was passed into 500 cc. dry warmed C6H6 containing 196 g. maleic anhydride and heating discontinued when the temperature reached 50°; the absorption of gas gradually slowed and was stopped in 2-2.5 hrs., and the mixture allowed to stand overnight, yielding 281.5-94.5 g. cis-Δ4-tetrahydrophthalic anhydride (I), m. 103-4°. I (228 g.), 525 cc. com. absolute EtOH, and 2.5 g. p-MeC6H4SO3H were refluxed 12-16 hrs., the EtOH removed by 2 azeotropic distillations with PhMe, the residue cooled, 200 cc. ether added, and the ether extract dried, yielding 280-92 g. cis-di-Et Δ1-tetrahydrophthalate (II), b5 129-31°, n23D 1.4610; the same procedure yielded 239 g. di-Me ester (III), b5 120-2°, n25D 1.4700. Hydrogenation of 226 g. II with 0.5 g. prereduced Adams catalyst in 20 cc. absolute EtOH or 1 g. 1% Pd-on-C without solvent at 30-15 lb./sq. in. for 3-5 hrs. yielded 215-19 g. cis-hexahydrophthalate (IV), b9 130-2°, n25D 1.4510; hexahydro compound from III, b5 110-12°, n25D 1.4570. In the following preparation all materials and apparatus were carefully dried; the original paper should be consulted for details. IV (76 g.) in 2130 cc. xylene was added during 45.5 hrs. to 1 l. refluxing xylene containing 31.3 g. Na, the mixture cooled in an ice-salt bath, 1.5 l. xylene siphoned off and discarded, 78.5 cc. AcOH in 500 cc. ether added during 30 min., the NaOAc filtered off and extracted with ether, and the ether and xylene distilled off in vacuo, yielding 1.1 g. bicyclo[4.2.0]octan-7-ol-8-one (VI), m. 178-84.5° (from EtOH); fractionation of the residue from the ether filtrate yielded 5.7 g. VI, n25D 1.4992, d254 1.1218, MRD calculated 36.66, found 36.71. The following derivatives of VI were prepared and purified by chromatography: 3,5-dinitrobenzoate, m. 131-2° (from methylcyclohexane); p-phenylazobenzoate, m. 138-9° (from hexane); 2,4-dinitrophenylosazone, m. 248.5-57.5° (from EtOAc); the residue yielded an uninvestigated compound, m. 152.5-3.5°. VI (1.89 g.) reduced at atm. pressure in 40 cc. absolute EtOH with 2 g. W-7 Raney Ni yielded 0.315 g. trans-bicyclo[4.2.0]octane-7,8-diol (VII), m. 140.5-1.5°. VII (0.043 g.) and 0.326 g. p-PhN2C6H4COCl (VIII) refluxed 11 hrs. with 10 cc. pyridine yielded 0.132 g. bis(p-phenylazobenzoate), m. 174.8-5.8° (from methylcyclohexane). Concentration of the hexane solution from VII and distillation of the residue yielded 5% cis-bicyclo compound (IX), m. 71.5-3.5°; VIII derivative, m. 165-6°. Addnl. evidence for the structure of IX and VII was obtained from their effect on the pH of 0.1 M boric acid.

Although many compounds look similar to this compound(610-09-3)Application In Synthesis of cis-Cyclohexane-1,2-dicarboxylic acid, numerous studies have shown that this compound(SMILES:O=C([C@H]1[C@@H](C(O)=O)CCCC1)O), has unique advantages. If you want to know more about similar compounds, you can read my other articles.

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

A small discovery about 37443-42-8

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So far, in addition to halogen atoms, other non-metallic atoms can become part of the aromatic heterocycle, and the target ring system is still aromatic.Muller, Giel; Scheer, Adam; Osborn, David L.; Taatjes, Craig A.; Meloni, Giovanni researched the compound: Methyl tetrahydrofuran-2-carboxylate( cas:37443-42-8 ).Formula: C6H10O3.They published the article 《Low Temperature Chlorine-Initiated Oxidation of Small-Chain Methyl Esters: Quantification of Chain-Terminating HO2-Elimination Channels》 about this compound( cas:37443-42-8 ) in Journal of Physical Chemistry A. Keywords: small chain methyl ester low temperature chlorine initiated oxidation. We’ll tell you more about this compound (cas:37443-42-8).

Cl-initiated oxidation reactions of three small-chain Me esters, Me propanoate (CH3CH2COOCH3; MP), Me butanoate (CH3CH2CH2COOCH3; MB), and Me valerate (CH3CH2CH2CH2COOCH3; MV), are studied at 1 or 8 Torr and 550 and 650 K. Products are monitored as a function of mass, time, and photoionization energy using multiplexed photoionization mass spectrometry coupled to tunable synchrotron photoionization radiation. Pulsed photolysis of mol. chlorine is the source of Cl radicals, which remove an H atom from the ester, forming a free radical. In each case, after addition of O2 to the initial radicals, chain-terminating HO2-elimination reactions are observed to be important. Branching ratios among competing HO2-elimination channels are determined via absolute photoionization spectra of the unsaturated Me ester coproducts. At 550 K, HO2-elimination is observed to be selective, resulting in nearly exclusive production of the conjugated Me ester coproducts, Me propenoate, methyl-2-butenoate, and methyl-2-pentenoate, resp. However, in MV, upon raising the temperature to 650 K, other HO2-elimination pathways are observed that yield Me 3-pentenoate and Me 4-pentenoate. In each Me ester oxidation reaction, a peak is observed at a mass consistent with cyclic ether formation, indicating chain-propagating OH loss/ring formation pathways via QOOH intermediates. Evidence is observed for the participation of resonance-stabilized QOOH in the most prominent cyclic ether pathways. Stationary point energies for HO2-elimination pathways and select cyclic ether formation channels are calculated at the CBS-QB3 level of theory and assist in the assignment of reaction pathways and final products.

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A small discovery about 3326-71-4

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Most of the compounds have physiologically active properties, and their biological properties are often attributed to the heteroatoms contained in their molecules, and most of these heteroatoms also appear in cyclic structures. A Journal, Russian Journal of General Chemistry called Photoconductivity, Antioxidant, and Antimicrobial Activities of Some Acenaphthenequinone Derivatives, Author is Mhaidat, I.; Taha, Z. A.; Al Momani, W.; Hijazi, A. K., which mentions a compound: 3326-71-4, SMILESS is O=C(C1=CC=CO1)NN, Molecular C5H6N2O2, Category: benzisoxazole.

Photoconductive acenaphthenequinone derivatives I (R = thiophen-2-yl, 3-hydroxynaphthalen-2-yl, pyridin-4-yl, etc.) have been synthesized by a one-pot process of acenaphthenequinone with different aromatic hydrazides RC(O)NHNH2. Photoelectrochem. (PEC) measurements reveal that the compounds demonstrate photoresponse upon illumination by light of intensities 1000 and 10000 W/m2. The photoconductivity behavior of the derivatives I is enhanced in the presence of electron donor groups attached to the aromatic ring. Thereby, these products may be used in material devices as organic thin film transistors, on/off sensors, etc. The antioxidant activity of the products has been tested by DPPH radical scavenging method in vitro, indicating their significant potential. Antimicrobial activity of the derivatives I has been estimated by min. inhibitory concentration (MIC, mg/mL) using the micro-broth dilution method. The compounds are moderately active against some Gram pos. bacteria and Candida albicans and completely inactive against Gram neg. bacteria tested.

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You Should Know Something about 3326-71-4

Compounds in my other articles are similar to this one(2-Furoic hydrazide)COA of Formula: C5H6N2O2, you can compare them to see their pros and cons in some ways,such as convenient, effective and so on.

The chemical properties of alicyclic heterocycles are similar to those of the corresponding chain compounds. Compound: 2-Furoic hydrazide, is researched, Molecular C5H6N2O2, CAS is 3326-71-4, about Synthetic stratagem, characterization and biocidal applications of triorganotin(IV) complexes derived from hydrazide/hydrazone analogues, the main research direction is triorganotin benzylidene benzohydrazide preparation antibacterial antifungal antidiabetic activity; alpha amylase inhibitor triorganotin benzylidene benzohydrazide complex; furanylmethylene furancarbohydrazide preparation crystal mol structure.COA of Formula: C5H6N2O2.

A series of Schiff base ligands as benzylidene benzohydrazide and their hydrazone analogs (Ia-Ic) have been synthesized and then complexed with organotin(IV) moiety having general formula [R’3SnL] to get the target compounds (1-9), where L = C4H3OCONHN:CHR, R = C6H5O (Ia), C4H5O (Ib), C6H3Cl2 (Ic) and R’ = -CH3 (1-3), -CH2Ph (4-6), -Ph (7-9). They were fully characterized using FT-IR, NMR (1H, 13C and 119Sn) spectroscopy, along with elemental anal. and m.p. One of the precursor (Ib) has been analyzed by single crystal XRD to further authenticate the structure. The 119Sn NMR data suggest the mol. geometry of organotin derivatives as distorted pentagonal bipyramidal. They were also evaluated for their antibacterial, antifungal, α-amylase inhibition, DPPH, total reducing power and total antioxidant activities. Triaryltin(IV) derivatives show good antibacterial and antifungal activity. Whereas the data for antidiabetic activity demonstrated that the compounds may serve as moderately effective alpha amylase inhibitor.

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Benzisoxazole – Wikipedia,
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Extended knowledge of 3326-71-4

Compounds in my other articles are similar to this one(2-Furoic hydrazide)Quality Control of 2-Furoic hydrazide, you can compare them to see their pros and cons in some ways,such as convenient, effective and so on.

The preparation of ester heterocycles mostly uses heteroatoms as nucleophilic sites, which are achieved by intramolecular substitution or addition reactions. Compound: 2-Furoic hydrazide( cas:3326-71-4 ) is researched.Quality Control of 2-Furoic hydrazide.Haribabu, Jebiti; Srividya, Swaminathan; Umapathi, Reddicherla; Gayathri, Dasararaju; Venkatesu, Pannuru; Bhuvanesh, Nattamai; Karvembu, Ramasamy published the article 《Enhanced anticancer activity of half-sandwich Ru(II)-p-cymene complex bearing heterocyclic hydrazone ligand》 about this compound( cas:3326-71-4 ) in Inorganic Chemistry Communications. Keywords: cymene ruthenium indole hydrazone preparation crystal mol structure; anticancer half sandwich ruthenium cymene heterocyclic hydrazone complex. Let’s learn more about this compound (cas:3326-71-4).

The hydrazone ligand (HL) was synthesized from furan-2-carbohydrazide and indole-3-carboxaldehyde. The reaction of [RuCl2(p-cymene)]2 with HL in the presence of sodium methoxide yielded organometallic Ru(II)-p-cymene compound of the type [RuCl(η6-p-cymene)(η2-N,O-indole hydrazone)] (1). The ligand and complex were characterized by CHN anal. and various spectroscopic tools. The piano stool (pseudo-octahedral) geometry of the complex was confirmed by single crystal x-ray diffraction. The anticancer property of the ligand and complex was investigated against A549, HeLa and MCF7 cancer cell lines. The complex exhibited superior activity against A549 and HeLa cancer cells with the IC50 values of 23.4 and 12.9μM, resp.

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Reference:
Benzisoxazole – Wikipedia,
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