137744-81-1Relevant academic research and scientific papers
Electroreductive Cobalt-Catalyzed Carboxylation: Cross-Electrophile Electrocoupling with Atmospheric CO2
Ackermann, Lutz,Ang, Nate W. J.,Oliveira, Jo?o C. A.
supporting information, p. 12842 - 12847 (2020/06/02)
The chemical use of CO2 as an inexpensive, nontoxic C1 synthon is of utmost topical interest in the context of carbon capture and utilization (CCU). We present the merger of cobalt catalysis and electrochemical synthesis for mild catalytic carb
Intramolecular Cyclization of Vinyldiazoacetates as a Versatile Route to Substituted Pyrazoles
Drikermann, Denis,G?rls, Helmar,Kerndl, Valerie,Vilotijevic, Ivan
supporting information, p. 1158 - 1162 (2020/07/20)
Vinyldiazo compounds undergo a thermal electrocyclization to form pyrazoles in yields of up to 95percent. The reactions are operationally simple, use readily available starting materials, require no intervention of a catalyst, and enable the synthesis of mono-, di- A nd tri-substituted pyrazoles. With the ability to produce highly substituted pyrazoles and the flexibility in installing various types of substituents, this method constitutes a new entry to this valuable heterocyclic scaffold and may be of interest to all branches of the chemical industry.
Direct Enantioselective and Regioselective Alkylation of β,γ-Unsaturated Carboxylic Acids with Chiral Lithium Amides as Traceless Auxiliaries
Yu, Kai,Miao, Bukeyan,Wang, Wenqi,Zakarian, Armen
supporting information, (2019/03/19)
Efficient asymmetric alkylation of β,γ-unsaturated carboxylic acids without prior functionalization is enabled by chiral lithium amides. Enantioselectivity is imparted by a putative mixed lithium amide-enediolate aggregate that acts a traceless auxiliary formed in situ, allowing for a direct asymmetric alkylation and a simple recovery of the chiral reagent.
Efficient Pd-Catalyzed Regio- and Stereoselective Carboxylation of Allylic Alcohols with Formic Acid
Fu, Ming-Chen,Shang, Rui,Cheng, Wan-Min,Fu, Yao
supporting information, p. 8818 - 8822 (2017/07/11)
Formic acid is efficiently used as a C1 source to directly carboxylate allylic alcohols in the presence of a low loading of palladium catalyst and acetic anhydride as additive to afford β,γ-unsaturated carboxylic acids with excellent chemo-, regio-, and stereoselectivity. The reaction proceeds through a carbonylation process with in situ-generated carbon monoxide under mild conditions, avoiding the use of high-pressure gaseous CO. A bisphosphine ligand with a large bite angle (4,5-bis{diphenylphosphino}-9,9-dimethylxanthene, Xantphos) was found to be uniquely effective for this transformation. The regio- and stereoconvergence of this reaction is ascribed to the thermodynamically favored isomerization of the allylic electrophile in the presence of the palladium catalyst.
Cobalt-Catalyzed Allylic C(sp3)-H Carboxylation with CO2
Michigami, Kenichi,Mita, Tsuyoshi,Sato, Yoshihiro
supporting information, p. 6094 - 6097 (2017/05/08)
Catalytic carboxylation of the allylic C(sp3)-H bond of terminal alkenes with CO2 was developed with the aid of a Co/Xantphos complex. A wide range of allylarenes and 1,4-dienes were successfully transformed into the linear styrylacetic acid and hexa-3,5-dienoic acid derivatives in moderate to high yields, with excellent regioselectivity. The carboxylation showed remarkable functional group tolerability, so that selective addition to CO2 occurred in the presence of other carbonyl groups such as amide, ester, and ketone. Since styrylacetic acid derivatives can be readily converted into optically active γ-butyrolactones through Sharpless asymmetric dihydroxylation, this allylic C(sp3)-H carboxylation showcases a facile synthesis of γ-butyrolactones from simple allylarenes via short steps.
An Expeditious Synthesis of 8-Methoxy-1-tetralone
Castillo-Rangel, Norma,Pérez-Díaz, José Oscar H.,Vázquez, Alfredo
, p. 2050 - 2056 (2016/07/06)
8-Methoxy-1-tetralone was synthesized in a concise and efficient manner involving a sequential palladium-mediated cross-coupling reaction (Heck), catalytic hydrogenation, and intramolecular acylation mediated by Eaton's reagent or Lewis acids. The pivotal step in the synthesis was the use of a bromine substituent at the benzenoid C4 position of the intermediate methyl 4-arylbutyric ester to ensure cyclization ortho to the methoxy moiety and obviate cyclization at the para position to the thermodynamically preferred 6-methoxy-1-tetralone, the sole product obtained in the absence of this blocking group.
A Chiral Electrophilic Selenium Catalyst for Highly Enantioselective Oxidative Cyclization
Kawamata, Yu,Hashimoto, Takuya,Maruoka, Keiji
supporting information, p. 5206 - 5209 (2016/05/19)
Chiral electrophilic selenium catalysts have been applied to catalytic asymmetric transformations of alkenes over the past two decades. However, highly enantioselective reactions with a broad substrate scope have not yet been developed. We report the first successful example of this reaction employing a catalyst based on a rigid indanol scaffold, which can be easily synthesized from a commercially available indanone. The reaction efficiently converts β,γ-unsaturated carboxylic acids into various enantioenriched γ-butenolides under mild conditions.
Dual targeting of adenosine A2A receptors and monoamine oxidase B by 4H-3,1-benzothiazin-4-ones
St??el, Anne,Schlenk, Miriam,Hinz, Sonja,Küppers, Petra,Heer, Jag,Gütschow, Michael,Müller, Christa E.
, p. 4580 - 4596 (2013/07/19)
Blockade of A2A adenosine receptors (A2AARs) and inhibition of monoamine oxidase B (MAO-B) in the brain are considered attractive strategies for the treatment of neurodegenerative diseases such as Parkinson's disease (PD). In the present study, benzothiazinones, e.g., 2-(3-chlorophenoxy)- N-(4-oxo-4H-3,1-benzothiazin-2-yl)acetamide (13), were identified as a novel class of potent MAO-B inhibitors (IC50 human MAO-B: 1.63 nM). Benzothiazinones with large substituents in the 2-position, e.g., methoxycinnamoylamino, phenylbutyrylamino, or chlorobenzylpiperazinylbenzamido residues (14, 17, 27, and 28), showed high affinity and selectivity for A 2AARs (Ki human A2AAR: 39.5-69.5 nM). By optimizing benzothiazinones for both targets, the first potent, dual-acting A2AAR/MAO-B inhibitors with a nonxanthine structure were developed. The best derivative was N-(4-oxo-4H-3,1-benzothiazin-2-yl)-4-phenylbutanamide (17, Ki human A2A, 39.5 nM; IC50 human MAO-B, 34.9 nM; selective versus other AR subtypes and MAO-A), which inhibited A 2AAR-induced cAMP accumulation and showed competitive, reversible MAO-B inhibition. The new compounds may be useful tools for validating the A2AAR/MAO-B dual target approach in PD.
Zwitterionic aza-Claisen rearrangements controlled by pyrrolidine auxiliaries-useful key steps in convergent enantioselective syntheses
Friedemann, Nora M.,Haerter, Alice,Brandes, Sebastian,Gross, Steffen,Gerlach, Dorothea,Muench, Winfried,Schollmeyer, Dieter,Nubbemeyer, Udo
supporting information; experimental part, p. 2346 - 2358 (2012/05/20)
Chiral pyrrolidine substituents served as efficient auxiliaries in diastereoselective zwitterionic ketene aza-Claisen rearrangements. Palladium-catalysed N-allylation starting from optically active proline and prolinol derivatives, as well as from (2S,5S)-2,5-dimethoxymethylpyrrolidine, gave various allylamines bearing trisubstituted olefin moieties. Treatment with complex carboxylic acid fluorides in the presence of trimethylaluminium induced activated ketene addition to the nitrogen and subsequent [3,3] sigmatropic rearrangement to give γ,δ-unsaturated amides with excellent simple diastereoselectivities and up to 11:1 auxiliary-induced diastereomeric ratios. Cleavage of the pyrrolidine amide was achieved through iodolactonization, with the option for recovery of the auxiliary pyrrolidine. The stereochemical outcomes of the rearrangements and the iodocyclizations were established by X-ray and NOEDS analyses of suitable amides and lactones. Overall, both enantiomers were accessible selectively. The optically active amides and lactones of defined configurations formed in this way should be useful as key intermediates in convergent steroidal natural and pharmaceutically important product synthesis. Enantiopure N-allylpyrrolidines and 4-arylbut-3-enoyl fluorides underwent zwitterionic aza-Claisen rearrangements in high yields, as well as with high simple and up to 11:1 auxiliary-induced diastereoselectivities. After selective olefin hydrogenation, iodocyclization and pyrrolidine removal enabled synthesis of the lactones. Both enantiomers of target molecules could be achieved selectively.
Synthesis and cardiovascular activity of phenylalkylamine derivatives. I. Potential specific bradycardic agents
Ozaki,Matsukura,Kabasawa,Ishibashi,Ikemori,Hamano,Minami
, p. 2735 - 2740 (2007/10/02)
A series of acyclic amide derivatives of N-(ω-aminoalkyl)-N-methylhomoveratrylamine was synthesized and evaluated for their bradycardic activity in isolated guinea pig right atria. Among these compounds, (E)-N-[3[N'-[2-(3,4-dimethoxyphenyl)ethyl]-N'-methy
