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In organic chemistry, atoms other than carbon and hydrogen are generally referred to as heteroatoms. The most common heteroatoms are nitrogen, oxygen and sulfur. Now I present to you an article called Solvent effect on the intramolecular hydrogen bond in 8-quinolinol N-oxide, published in 1996-02-29, which mentions a compound: 1127-45-3, mainly applied to solvent effect hydrogen bond quinolinol oxide; intramol hydrogen bond quinolinol oxide, Recommanded Product: 8-Hydroxyquinoline 1-oxide.

Solvent effect on intramol. hydrogen bond in 8-quinolinol N-oxide has been studied by IR, UV, 1H NMR and 13C NMR spectroscopy, dipole moment measurements and quantum-mech. calculations The solute-solvent interactions are of local character and they vary considerably over the range of solvent under study. The results suggest that formation complexes with solvent mols. weaken the intramol. hydrogen bond in 8-quinolinol N-oxide.

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Recommanded Product: 8-Hydroxyquinoline 1-oxide. 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. Compound: 8-Hydroxyquinoline 1-oxide, is researched, Molecular C9H7NO2, CAS is 1127-45-3, about Oxidation of 1-naphthol and related phenols with hydrogen peroxide and potassium superoxide catalyzed by 5,10,15,20-tetraarylporphyrinatoiron(III) chlorides in different reaction conditions.

Reaction of 1-naphthol and related phenols with hydrogen peroxide catalyzed by 5,10,15,20-tetra(pentafluorophenyl)porphyrinatoiron(III) chloride gives quinones and oxidative coupling products, whereas the reaction of naphthols with hydrogen peroxide catalyzed by 5,10,15,20-tetramesitylporphyrinatoiron(III) chloride gives the above products along with quinone epoxides in moderate yields. The reaction of quinone with potassium superoxide catalyzed by Me12TPPFe(III)Cl and p-MeOTPPFe(III)Cl give higher yields of quinone epoxides than the reaction of quinone with hydrogen peroxide catalyzed by 5,10,15,20-tetraarylporphyrinatoiron(III) chlorides.

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Application In Synthesis of 8-Hydroxyquinoline 1-oxide. The protonation of heteroatoms in aromatic heterocycles can be divided into two categories: lone pairs of electrons are in the aromatic ring conjugated system; and lone pairs of electrons do not participate. Compound: 8-Hydroxyquinoline 1-oxide, is researched, Molecular C9H7NO2, CAS is 1127-45-3, about Complexation of dimethyltin(IV) ion with 2-mercaptopyridine N-oxide and 8-hydroxyquinoline N-oxide. Author is Singh, K. Ajit; Gupta, V. D..

Thermodn. parameters were determined for the complexation of Me2SnCl2 with the title N-oxides. In both cases ΔG and ΔH were neg.; ΔS was neg. for complexation with 2-mercaptopyridine N-oxide and pos. for complexation with 8-hydroxyquinoline N-oxide.

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The three-dimensional configuration of the ester heterocycle is basically the same as that of the carbocycle. Compound: 8-Hydroxyquinoline 1-oxide(SMILESS: OC1=CC=CC2=CC=C[N+]([O-])=C12,cas:1127-45-3) is researched.Application In Synthesis of (S)-Propane-1,2-diamine dihydrochloride. The article 《Syntheses and electronic spectra of 2,2′-isopropylidenedi-8-quinolinol, its nickel(II), and copper(II) chelates》 in relation to this compound, is published in Bulletin of the Chemical Society of Japan. Let’s take a look at the latest research on this compound (cas:1127-45-3).

The title ligand was prepared from 8-quinolinol N-oxide by a 4-step synthesis. Its Ni(II) and Cu(II) chelates were also prepared Square-coordination of the ligand to the metal was revealed by a comparison of the d-d bands between the chelates and quadridentate Schiff base chelates. Intra-ligand transition bands of the title chelates and the solvent effects on the frequency shifts were compared with those of the ligand, 8-hydroxy-1-methylquinolinium hydroxide, bis(8-quinolinolato)palladium(II), -copper(II), and -nickel(II).

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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, Article, Research Support, N.I.H., Extramural, Research Support, Non-U.S. Gov’t, Organic & Biomolecular Chemistry called Insights into the mechanistic and synthetic aspects of the Mo/P-catalyzed oxidation of N-heterocycles, Author is Larionov, Oleg V.; Stephens, David; Mfuh, Adelphe M.; Arman, Hadi D.; Naumova, Anastasia S.; Chavez, Gabriel; Skenderi, Behije, which mentions a compound: 1127-45-3, SMILESS is OC1=CC=CC2=CC=C[N+]([O-])=C12, Molecular C9H7NO2, Electric Literature of C9H7NO2.

A Mo/P catalytic system for an efficient gram-scale oxidation of a variety of nitrogen heterocycles to N-oxides with hydrogen peroxide as terminal oxidant has been investigated. Combined spectroscopic and crystallog. studies point to the tetranuclear Mo4P peroxo complex as one of the active catalytic species present in the solution Based on this finding an optimized catalytic system has been developed. The utility and chemoselectivity of the catalytic system has been demonstrated by the synthesis of over 20 heterocyclic N-oxides.

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Yang, Yan; Zhou, Zhen; Wei, Zu-Zhuang; Qin, Qi-Pin; Yang, Lin; Liang, Hong published an article about the compound: 8-Hydroxyquinoline 1-oxide( cas:1127-45-3,SMILESS:OC1=CC=CC2=CC=C[N+]([O-])=C12 ).Formula: C9H7NO2. Aromatic heterocyclic compounds can be classified according to the number of heteroatoms or the size of the ring. The authors also want to convey more information about this compound (cas:1127-45-3) through the article.

In the quest for rare earth metal complexes with enhanced cancer chemotherapeutic properties, the discovery of seven lanthanide(III) complexes bearing 8-hydroxyquinoline-N-oxide (NQ) and 1,10-phenanthroline (phen) ligands as potential anticancer drugs is described. Complexes [SmIII(NQ)(phen)(H2O)Cl2] , [EuII(NQ)(phen)(H2O)Cl2] , [GdIII(NQ)(phen)(H2O)Cl2] , [DyIII(NQ)(phen)(H2O)Cl2] , [HoIII(NQ)(phen)(H2O)Cl2] , [ErIII(NQ)(phen)(H2O)Cl2] , and [YbIII(NQ)(phen)(H2O)Cl2] exhibit high antiproliferative activity against cisplatin-resistant A549/DDP cells (IC50 = 0.025-0.097 μM) and low toxicity to normal HL-7702 cells. Moreover, complex [SmIII(NQ)(phen)(H2O)Cl2], and to a lesser extent [YbIII(NQ)(phen)(H2O)Cl2], can upregulate the expression of LC3 and Beclin1 and downregulate p62 to induce apoptosis in cisplatin-resistant A549/DDP cell lines, which is related to the cell autophagy-inducing properties of [SmIII(NQ)(phen)(H2O)Cl2] and [YbIII(NQ)(phen)(H2O)Cl2]. Furthermore, in vivo assays suggest that [SmIII(NQ)(phen)(H2O)Cl2] significantly inhibits A549/DDP xenograft tumor growth (56.5%). These results indicate that lanthanide(III) complex [SmIII(NQ)(phen)(H2O)Cl2] is a promising candidate as an anticancer drug against cisplatin-resistant A549/DDP cells.

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In general, if the atoms that make up the ring contain heteroatoms, such rings become heterocycles, and organic compounds containing heterocycles are called heterocyclic compounds. An article called Benzylation of heterocyclic N-oxides via direct oxidative cross-dehydrogenative coupling with toluene derivatives, published in 2016, which mentions a compound: 1127-45-3, Name is 8-Hydroxyquinoline 1-oxide, Molecular C9H7NO2, Application In Synthesis of 8-Hydroxyquinoline 1-oxide.

A novel cross-dehydrogenative coupling (CDC) of heterocyclic N-oxides with toluene derivatives has been discussed, allowing for the facile synthesis of a broad range of structurally diverse C1-benzyl quinoline N-oxides, isoquinoline N-oxides and pyridine N-oxides, including two methylated quinoline N-oxides in particular. This protocol not only extends the application of toluenes in synthetic organic chem., but also offers an alternative method to prepare benzylated heterocyclic N-oxides without any metal involved, which is important in medicinal chem.

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Petitjean, Anne; Kyritsakas, Nathalie; Lehn, Jean-Marie published an article about the compound: 8-Hydroxyquinoline 1-oxide( cas:1127-45-3,SMILESS:OC1=CC=CC2=CC=C[N+]([O-])=C12 ).Quality Control of 8-Hydroxyquinoline 1-oxide. Aromatic heterocyclic compounds can be classified according to the number of heteroatoms or the size of the ring. The authors also want to convey more information about this compound (cas:1127-45-3) through the article.

Mol. devices capable of accessing different controlled conformational states, while optically signaling the occupied state, are attractive tools for nanotechnol. since they relate to both areas of mol. mech. devices and logic gates. The authors report here a simple mol. system that allows access to four distinct conformational and optical states. It is based on the regioselective complexation of metal ions to a heterocyclic ligand triad, which is dictated by the accessible coordination geometry and electrostatic properties of two distinct binding subunits. Thus, local conformational switching is brought about by tetrahedral coordination (of CuI) or octahedral coordination (of M2+ ions) to bidentate and tridentate binding subunits, resp. The shape modifications undergone represent an ion-controlled nanomech. device. They give controlled access to four different states that display different physicochem. (e.g. optical) properties and provide a basis for logic gate operations.

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Recommanded Product: 8-Hydroxyquinoline 1-oxide. The reaction of aromatic heterocyclic molecules with protons is called protonation. Aromatic heterocycles are more basic than benzene due to the participation of heteroatoms. Compound: 8-Hydroxyquinoline 1-oxide, is researched, Molecular C9H7NO2, CAS is 1127-45-3, about The oxidation of pyridines catalyzed by surfactant-encapsulated polyoxometalate [(C18H37)2(CH3)2N]8[HBW11O39] with the temperature-responsive property of solubility. Author is Zhao, Wei; Yang, Chunxia; Ding, Yong; Ma, Baochun.

Temperature-responsive characterization of solubility based on a surfactant-encapsulated polyoxometalate ([(C18H37)2(CH3)2N]8[HBW11O39]) in tert-Bu alc. was described and used in catalytic oxidation of pyridines. The catalyst could be recovered and reused several times by controlling the temperature

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Electric Literature of C9H7NO2. The reaction of aromatic heterocyclic molecules with protons is called protonation. Aromatic heterocycles are more basic than benzene due to the participation of heteroatoms. Compound: 8-Hydroxyquinoline 1-oxide, is researched, Molecular C9H7NO2, CAS is 1127-45-3, about Intramolecular hydrogen bonding in 8-quinolinol N-oxides, quinaldinic acid N-oxides and quinoline-2-carboxyamide N-oxide. Deuterium isotope effects on 13C chemical shifts. Author is Dziembowska, Teresa; Rozwadowski, Zbigniew; Hansen, Poul Erik.

Secondary isotope effects on 13C chem. shifts have been measured in a series quinolinols, quinaldinic acid N-oxides and quinoline-2-carboxyamide N-oxide. For 8-quinolinol N-oxides a good correlation was found between δOH and nΔC(OD) isotope effects. The OH and 13C chem. shifts and nΔC(OD) show very small temperature dependences. The primary isotope effects are small, pos. and temperature insensitive. Furthermore, they increase with increasing nΔC(OD). All features point towards a localized hydrogen bond in an asym. double well potential. The quinaldinic acid N-oxides show long-range isotope effects on 13C chem. shifts of both signs with 2ΔC=O(OD) rather small. The primary isotope effects of the quinaldinic acid N-oxide is of order of 0.5 ppm, whereas for its 4-ethoxy-derivative is smaller, ∼0.3 ppm. The OH chem. shifts resonate at the low field ∼18-20 ppm and the OH resonance is fairly broad at room temperature, especially for the 4-ethoxy-derivative The temperature effects on the chem. shifts, primary and secondary isotope effects are small. For quinaldinic acid N-oxides the asym. broad quasi-single potential is suggested.For quinoline-2-carboxyamide N-oxide the isotope effects are small, indicating rather weak hydrogen bond.

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