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Epoxy compounds usually have stronger nucleophilic ability, because the alkyl group on the oxygen atom makes the bond angle smaller, which makes the lone pair of electrons react more dissimilarly with the electron-deficient system. Compound: 4-Methoxypiperidine, is researched, Molecular C6H13NO, CAS is 4045-24-3, about Three-component radical homo Mannich reaction.Safety of 4-Methoxypiperidine.

By employing a radical process, enolizable aldehydes were utilized as substrates in the three-component radical homo-Mannich reaction for the streamlined synthesis of γ-amino-carbonyl compounds. The electrophilic radicals were generated from thiols HSCHR1C(O)R2 (R1 = H, Me; R2 = Me, EtO, PhCH2O, 1-adamantyl, Et2N, etc.) via the desulfurization process facilitated by visible-light, and then added to the electron-rich double bonds of enamines, formed in-situ from aldehydes or ketones R3CH2C(O)R4 [R3 = H, Et, MeSCH2, Ph, PhCH2, etc., R4 = H; R3 = H, R4 = Ph, 3-FC6H4, etc.; R3R4 = (CH2)5, CH2CHPhCH2CH2, CH2N(CH2Ph)CH2CH2, etc.] and amines R5NHR6 [R5 = Me, R6 = H2C:CHCH2, PhCH2, cyclohexyl, etc.; R5 = PhCH2, R6 = PhCH2, EtO2CCH2, etc.; R5R6 = (CH2)4, CHPh(CH2)3, etc.] to provide the products I in a single step. The broad scope, mild conditions, high functional group tolerance, and modularity of this metal-free approach for the synthesis of complex tertiary amine scaffolds will likely be of great utility to chemists in both academia and industry.

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Reference of 4-Methoxypiperidine. The fused heterocycle is formed by combining a benzene ring with a single heterocycle, or two or more single heterocycles. Compound: 4-Methoxypiperidine, is researched, Molecular C6H13NO, CAS is 4045-24-3, about Photoredox B-H functionalization to selective B-N(sp3) coupling of nido-carborane with primary and secondary amines. Author is Huang, Ronghui; Zhao, Weijia; Xu, Shengwen; Xu, Jingkai; Li, Chunxiao; Lu, Changsheng; Yan, Hong.

Access to nido-carborane site-selective B-N(sp3) coupling by photoredox catalyzed B-H activation has been achieved for the first time, which leads to the synthesis of a series of nitrogen-containing nido-carboranes with moderate to good yields. This protocol is applicable to primary and secondary amines containing alkyl, or heteroaryl groups as well as sulfonamides. Furthermore, the open to air and metal-free conditions with excellent site-selectivity represent a significant improvement for B-H functionalization of nido-carboranes with organic functionalities.

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SDS of cas: 4045-24-3. The fused heterocycle is formed by combining a benzene ring with a single heterocycle, or two or more single heterocycles. Compound: 4-Methoxypiperidine, is researched, Molecular C6H13NO, CAS is 4045-24-3, about Three-component radical homo Mannich reaction. Author is Shi, Shuai; Qiu, Wenting; Miao, Pannan; Li, Ruining; Lin, Xianfeng; Sun, Zhankui.

By employing a radical process, enolizable aldehydes were utilized as substrates in the three-component radical homo-Mannich reaction for the streamlined synthesis of γ-amino-carbonyl compounds. The electrophilic radicals were generated from thiols HSCHR1C(O)R2 (R1 = H, Me; R2 = Me, EtO, PhCH2O, 1-adamantyl, Et2N, etc.) via the desulfurization process facilitated by visible-light, and then added to the electron-rich double bonds of enamines, formed in-situ from aldehydes or ketones R3CH2C(O)R4 [R3 = H, Et, MeSCH2, Ph, PhCH2, etc., R4 = H; R3 = H, R4 = Ph, 3-FC6H4, etc.; R3R4 = (CH2)5, CH2CHPhCH2CH2, CH2N(CH2Ph)CH2CH2, etc.] and amines R5NHR6 [R5 = Me, R6 = H2C:CHCH2, PhCH2, cyclohexyl, etc.; R5 = PhCH2, R6 = PhCH2, EtO2CCH2, etc.; R5R6 = (CH2)4, CHPh(CH2)3, etc.] to provide the products I in a single step. The broad scope, mild conditions, high functional group tolerance, and modularity of this metal-free approach for the synthesis of complex tertiary amine scaffolds will likely be of great utility to chemists in both academia and industry.

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In some applications, this compound(4045-24-3)Quality Control of 4-Methoxypiperidine is unique.If you want to know more details about this compound, you can contact with the author or consult more relevant literature.

Quality Control of 4-Methoxypiperidine. Aromatic heterocyclic compounds can also be classified according to the number of heteroatoms contained in the heterocycle: single heteroatom, two heteroatoms, three heteroatoms and four heteroatoms. Compound: 4-Methoxypiperidine, is researched, Molecular C6H13NO, CAS is 4045-24-3, about Palladium-Catalyzed C-H Amination/[2+3] or [2+4] Cyclization via C(sp3 or sp2)-H Activation. Author is An, Yang; Li, Yuke; Zhang, Xiao-Yan; Zhang, Zhe; Gou, Xue-Ya; Ding, Ya-Nan; Li, Qiao; Liang, Yong-Min.

This report describes a palladium-catalyzed Catellani reaction consisting of amination/[2+3] or [2+4] cyclization via a carboxylate ligand-exchange strategy. This method effectively activates ortho-substituents that avoid a second C-H palladation. The scope of substrates was broad, o-methyl-substituted iodoarenes R-2-CH3-C6H3I (R = H, 4-F, 3-Me, 4-Cl, etc.), 3-iodo-4-methyl-pyridine were applied to the reaction smoothly, and o-phenyl-substituted iodoarenes 2-I-C6H4-(4-R1C6H4-) (R1 = H, Me, Ph, F, etc.), 1-(2-iodo-phenyl)-naphthalene can also be obtained by this method. In terms of mechanism, d. functional theory calculations proved the sequence of the key five-membered aryl-norbornene-palladacycle intermediate formation and C(sp3 or sp2)-H activation.

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The chemical properties of alicyclic heterocycles are similar to those of the corresponding chain compounds. Compound: 4-Methoxypiperidine, is researched, Molecular C6H13NO, CAS is 4045-24-3, about Three-component radical homo Mannich reaction, the main research direction is ester ketone amide gamma amino preparation; aldehyde ketone photochem homo Mannich amine thiol.HPLC of Formula: 4045-24-3.

By employing a radical process, enolizable aldehydes were utilized as substrates in the three-component radical homo-Mannich reaction for the streamlined synthesis of γ-amino-carbonyl compounds. The electrophilic radicals were generated from thiols HSCHR1C(O)R2 (R1 = H, Me; R2 = Me, EtO, PhCH2O, 1-adamantyl, Et2N, etc.) via the desulfurization process facilitated by visible-light, and then added to the electron-rich double bonds of enamines, formed in-situ from aldehydes or ketones R3CH2C(O)R4 [R3 = H, Et, MeSCH2, Ph, PhCH2, etc., R4 = H; R3 = H, R4 = Ph, 3-FC6H4, etc.; R3R4 = (CH2)5, CH2CHPhCH2CH2, CH2N(CH2Ph)CH2CH2, etc.] and amines R5NHR6 [R5 = Me, R6 = H2C:CHCH2, PhCH2, cyclohexyl, etc.; R5 = PhCH2, R6 = PhCH2, EtO2CCH2, etc.; R5R6 = (CH2)4, CHPh(CH2)3, etc.] to provide the products I in a single step. The broad scope, mild conditions, high functional group tolerance, and modularity of this metal-free approach for the synthesis of complex tertiary amine scaffolds will likely be of great utility to chemists in both academia and industry.

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The chemical properties of alicyclic heterocycles are similar to those of the corresponding chain compounds. Compound: 4-Methoxypiperidine, is researched, Molecular C6H13NO, CAS is 4045-24-3, about Orally bioavailable HCV NS5A inhibitors of unsymmetrical structural class, the main research direction is bioavailability HCV NS5A inhibitor solubility permeability; Antiviral; HCV; NS5A; Oral bioavailability; Unsynmmetrical structure.Electric Literature of C6H13NO.

A novel unsym. structural class of orally bioavailable hepatitis C virus (HCV) nonstructural 5A protein (NS5A) inhibitors has been generated by improving both the solubility and membrane permeability of the lead compound found in our previous work. The representative compound 14, with a 5-hydroxymethylpyrazine group and a 3-t-butylpropargyl group on each side of the mol., exhibited the best oral bioavailability in this study, inhibiting not only the HCV genotype 1a, 1b, 2a, and 3a replicons with EC50 values in the picomolar range, but also inhibited 1a Q30 mutants induced by launched sym. inhibitors with EC50 values in the low nanomolar range.

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Product Details of 4045-24-3. 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: 4-Methoxypiperidine, is researched, Molecular C6H13NO, CAS is 4045-24-3, about Copper-Catalyzed Oxalamide-Directed ortho-C-H Amination of Anilines with Alkylamines. Author is Wu, Peng; Huang, Wei; Cheng, Tai-Jin; Lin, Hai-Xia; Xu, Hui; Dai, Hui-Xiong.

A copper-catalyzed oxalamide-directed ortho-C-H amination of anilines has been developed by using 1 atm of air as the sole oxidant. The protocol shows excellent functional group tolerance, and some heterocyclic amines including indole, benzothiophene, benzothiazole, quinoline, isoquinoline, and quinoxaline could be compatible in the reaction. The late-stage diversification of medicinal drugs demonstrates the synthetic utility of this protocol.

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Patil, Dilip V.; Si, Tengda; Kim, Hun Young; Oh, Kyungsoo published the article 《Visible-Light-Induced Photoaddition of N-Nitrosoalkylamines to Alkenes: One-Pot Tandem Approach to 1,2-Diamination of Alkenes from Secondary Amines》. Keywords: amino oxime preparation diastereoselective; amine alkene photoaddn nitrosation.They researched the compound: 4-Methoxypiperidine( cas:4045-24-3 ).Synthetic Route of C6H13NO. Aromatic heterocyclic compounds can be divided into two categories: single heterocyclic and fused heterocyclic. In addition, there is a lot of other information about this compound (cas:4045-24-3) here.

The generation of aminium radical cation species from N-nitrosoamines is disclosed for the first time through visible-light excitation at 453 nm. The developed visible-light-promoted photoaddn. reaction of N-nitrosoamines to alkenes, e.g., 1H-Indene was combined with the o-NQ-catalyzed aerobic oxidation protocol of amines, e.g., 1,4-dioxa-8-azaspiro[4.5]decane to telescope the direct handling of harmful N-nitroso compounds, where the desired α-amino oxime derivatives e.g., I were obtained in a one-pot tandem N-nitrosation and photoaddn. sequence.

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Epoxy compounds usually have stronger nucleophilic ability, because the alkyl group on the oxygen atom makes the bond angle smaller, which makes the lone pair of electrons react more dissimilarly with the electron-deficient system. Compound: 4-Methoxypiperidine, is researched, Molecular C6H13NO, CAS is 4045-24-3, about Electrochemical Nonacidic N-Nitrosation/N-Nitration of Secondary Amines through a Biradical Coupling Reaction.Application In Synthesis of 4-Methoxypiperidine.

An acid-free N-nitrosation/nitration of the N-H bonds in secondary amines/azoles with Fe(NO3)3 · 9H2O as the nitroso/nitro source through an electrocatalyzed radical coupling reaction was developed to give nitroso-amines I [R = piperidin-1-yl, pyrrolidin-1-yl, morpholin-4-yl, etc.] and nitro-azoles II [R1 = 3-Me-pyrazol-1-yl, imidazol-1-yl, benzotriazol-1-yl, etc.] under mild conditions. Control and competition experiments, as well as kinetic studies demonstrated that N-nitrosation and N-nitration involved two different radical reaction pathways involving N+ and N. radicals. Moreover, the electrocatalysis method enabled the preferential activation of the N-H bond over the electrode and thus provided high selectivity for specific N atoms. This strategy exhibited a broad scope and provided a green and straightforward approach to generate useful compounds I and II in good yields.

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The chemical properties of alicyclic heterocycles are similar to those of the corresponding chain compounds. Compound: 4-Methoxypiperidine, is researched, Molecular C6H13NO, CAS is 4045-24-3, about An acid-catalyzed 1,4-addition isocyanide-based multicomponent reaction in neat water, the main research direction is amine isocyanide chromone carboxaldehyde formic acid Ugi type addition; alkylaminomethylene oxochromane carboxamide preparation diastereoselective chemoselective green chem.COA of Formula: C6H13NO.

A green 1,4-addition isocyanide-based three-component reaction was developed to synthesize chromanones via a facile, mild, and efficient one-pot protocol without a metal catalyst. The 1,4-addition of isocyanides occurred at the C-2 position of chromones instead of the Schiff base in neat water. The hydrogen bond can dictate the stereo-outcome of olefins and provided an effective method for the diastereomer-selective synthesis of this type of chromanone. The novel green synthetic protocol allowed the quick synthesis of complex chromanones in an environmentally friendly manner.

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