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The dibenzylideneacetone adducts of uranyl bis(beta-diketonates). The low temperature NMR behaviour and molecular structure of [UO2(TTA)2·DBA]

Uranyl complexes of the type [UO2(OO)2·DBA] (OO = TTA, DBM and BA) have been prepared and characterized by 1H, 19F and 13C{1H} NMR, IR spectroscopic techniques and elemental analyses. The low temperature behaviour of the complex [UO2 (TTA)2·DBA] was studied by the 19F NMR technique and its structure solved by single-crystal X-ray diffraction. The structure determination shows that the uranium atom has pentagonal-bipyramidal geometry with the four oxygen atoms of TTA and one oxygen atom of DBA lying on the basal plane and two uranyl oxygen atoms occupy the apices.

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Reference:
Synthesis and Crystal Structure of a Chiral C3-Symmetric Oxygen Tripodal Ligand and Its Applications to Asymmetric Catalysis,
Chiral lanthanide(III) complexes of sulphur–nitrogen–oxygen ligand derived from aminothiourea and sodium D-camphor-β-sulfonate

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Microwave-assisted stereoselective 1,3-dipolar cycloaddition of C,N-diarylnitrone (i.e., N-(arylmethylidene)benzenamine N-oxide) and bis(arylmethylidene)acetone (=1,5-diarylpenta-1,4-dien-3-one): NMR and crystal analysis of diastereoisomeric bis(isoxazolidines)

Microwave-assisted stereoselective 1,3-dipolar cycloaddition of C,N-diarylnitrones (i.e., N-(arylmethylidene)benzenamine N-oxides) 2 to substituted bis(arylmethylidene)acetones (=1,5-diarylpenta-1,4-dien-3-ones) 1 leading to diastereoisomer pairs of bis-isoxazolidines 3 and 4 in good to excellent yield is described (Scheme2 and Table2). The configuration outcome of the reaction is discussed based on the NMR and X-ray data of the products. Copyright

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Reference:
Synthesis and Crystal Structure of a Chiral C3-Symmetric Oxygen Tripodal Ligand and Its Applications to Asymmetric Catalysis,
Chiral lanthanide(III) complexes of sulphur–nitrogen–oxygen ligand derived from aminothiourea and sodium D-camphor-β-sulfonate

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A novel synthesis of thienopyridine, pyrroloquinolinothiophene, pyrazolopyridin-3-yl-phenylthiourea and thiazolylpyrazolopyridine derivatives

Dibenzalacetones 1a-c reacted with cyanothioacetamide (2) to give the new styrylpyridinethione derivatives 3a-c which were used as the starting materials for the synthesis of other several heterocyclic compounds. Reactions with chloroacetone (4), N-arylmaleimides 7a,b, and ethyl iodide gave 2-S-acetonyl pyridines 5a-c, pyrrolo[3,4-f]quinolines 9a-f, and 2-S-ethylpyridines 11a-c, respectively. Several cycloaddition reactions were carried out on 3a-c, 5a-c, and 6a-c with dienophiles 7a,b, to afford the corresponding cycloadducts 9a-f, 10a-f, and 8a-f, respectively. Structures were established based on elemental analyses and spectral data. The antimicrobial activity of the newly synthesized compounds was tested.

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Reference:
Synthesis and Crystal Structure of a Chiral C3-Symmetric Oxygen Tripodal Ligand and Its Applications to Asymmetric Catalysis,
Chiral lanthanide(III) complexes of sulphur–nitrogen–oxygen ligand derived from aminothiourea and sodium D-camphor-β-sulfonate

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Phosphine-catalyzed cascade [3 + 2] cyclization-allylic alkylation, [2 + 2 + 1] annulation, and [3 + 2] cyclization reactions between allylic carbonates and enones

The phosphine-catalyzed annulations between Morita-Baylis-Hillman adduct carbonates and enones are reported. Under the catalysis of PBu3 (20 mol %), cascade [3 + 2] cyclization-allylic alkylation, [2 + 2 + 1] annulation, and [3 + 2] cyclization reactions chemoselectively occur depending on the substituent variation of both the carbonate and enone. These reactions provide efficient syntheses of highly functionalized cyclopentenes and cyclopentanes.

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Reference:
Synthesis and Crystal Structure of a Chiral C3-Symmetric Oxygen Tripodal Ligand and Its Applications to Asymmetric Catalysis,
Chiral lanthanide(III) complexes of sulphur–nitrogen–oxygen ligand derived from aminothiourea and sodium D-camphor-β-sulfonate

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Synthesis of 3-substituted indoles promoted by pulverization-activation method catalyzed by Bi(NO3)3·5H2O

(Chemical Equation Presented) A new, facile, efficient, “green” and chemoselective procedure for the synthesis of indole derivatives has been developed with pulverization-activation method catalyzed by Bi(NO 3)3·5H2O (PAMC- Bi(NO3) 3·5H2O) through grinding of indoles with aldehydes or Michael acceptors in the presence of catalytic amounts of Bi(NO 3)3·5H2O under solvent-free conditions.

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Reference:
Synthesis and Crystal Structure of a Chiral C3-Symmetric Oxygen Tripodal Ligand and Its Applications to Asymmetric Catalysis,
Chiral lanthanide(III) complexes of sulphur–nitrogen–oxygen ligand derived from aminothiourea and sodium D-camphor-β-sulfonate

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Synthesis of gamma-keto-delta-alkenyl-phosphonates and phosphine oxides as precursors of novel phosphono-pyrazoline and pyrazole derivatives

Herein we report the synthesis of gamma-keto-delta-alkenyl-phosphonates and phosphine oxides by two versions of strategy (a) which involves the addition of dialkyl phosphites to alpha,alpha?-diarylideneketones, and by strategy (b) which utilizes the reaction of P-chlorodiphenylphosphine with diarylidene ketones in acetic acid. On reaction with hydrazine derivatives, gamma-keto-delta-alkenyl-phosphonates and phosphine oxides give 3-phosphonoethylpyrazoline derivatives which can be converted into the corresponding aromatic pyrazoles by oxidative dehydrogenation, using sodium nitrite as oxidizing agent.

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Reference:
Synthesis and Crystal Structure of a Chiral C3-Symmetric Oxygen Tripodal Ligand and Its Applications to Asymmetric Catalysis,
Chiral lanthanide(III) complexes of sulphur–nitrogen–oxygen ligand derived from aminothiourea and sodium D-camphor-β-sulfonate

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From C2- to D2-symmetry: atropos phosphoramidites with a D2-symmetric backbone as highly efficient ligands in Cu-catalyzed conjugate additions

Atropos phosphoramidites with the D2-symmetric biphenyl backbone were diastereoselectively prepared with ease from achiral tetrahydroxy biphenyls. This type of ligands is proved to be highly efficient in the Cu-catalyzed conjugate additions of diethylzinc to alpha,beta-unsaturated ketones and nitroalkenes. The unique D2-symmetric backbone endows the ligands with an excellent chiral environment.

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Reference:
Synthesis and Crystal Structure of a Chiral C3-Symmetric Oxygen Tripodal Ligand and Its Applications to Asymmetric Catalysis,
Chiral lanthanide(III) complexes of sulphur–nitrogen–oxygen ligand derived from aminothiourea and sodium D-camphor-β-sulfonate

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A new route to 2,3-dihydro-1,5-benzothiazepines from nitrodisulfides and alpha,beta-unsaturated ketones by Sml2

Nitrodisulfides on treatment with Sml2 in anhydrous THF at room temperature lead to reactive intermediates, which are ‘living’ double-anions and react smoothly with alpha,beta-unsaturated ketones to afford 2,3-dihydro-1,5-benzothiazepines in good yields under mild and neutral conditions.

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Reference:
Synthesis and Crystal Structure of a Chiral C3-Symmetric Oxygen Tripodal Ligand and Its Applications to Asymmetric Catalysis,
Chiral lanthanide(III) complexes of sulphur–nitrogen–oxygen ligand derived from aminothiourea and sodium D-camphor-β-sulfonate

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A mild, chemoselective, oxidative method for deoximation using Dess- Martin periodinane

The Dess-Martin Periodinane (DMP) [1,1,1-triacetoxy-1,1-dihydro-1,2- benziodoxol-3(1H)-one], oxidatively deoximates aldoximes as well as ketoximes in very high yields, smoothly in short time, and under mild conditions. Deoximation occurs selectively in the presence of primary, secondary, and benzylic alcohols, O-methyl oximes, tosylhydrazones, and acid sensitive groups/moieties.

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Reference:
Synthesis and Crystal Structure of a Chiral C3-Symmetric Oxygen Tripodal Ligand and Its Applications to Asymmetric Catalysis,
Chiral lanthanide(III) complexes of sulphur–nitrogen–oxygen ligand derived from aminothiourea and sodium D-camphor-β-sulfonate

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Double Michael addition of nitromethane to divinyl ketones: A remarkably positive effect of additive

An efficient double Michael addition of nitromethane to divinyl ketones was established in good to high yields (75?99%). A wide range of cyclohexanones were obtained with excellent diastereocontrol (up to >20:1 dr) and enantioinduction (91?99% ee) in a one-pot fashion. The involvement of basic additive significantly enhanced the reactivity of this cascade sequence.

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Reference:
Synthesis and Crystal Structure of a Chiral C3-Symmetric Oxygen Tripodal Ligand and Its Applications to Asymmetric Catalysis,
Chiral lanthanide(III) complexes of sulphur–nitrogen–oxygen ligand derived from aminothiourea and sodium D-camphor-β-sulfonate