148 resultados para Química orgánica-Síntesis


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Enantiomerically pure carbamate-monoprotected trans-cyclohexane-1,2-diamines are used as chiral organocatalysts for the addition of aryl ketones and acetone to nitroalkenes to give enantioenriched β-substituted γ-nitroketones. The reaction was performed in the presence of 3,4-dimethoxybenzoic acid as an additive, in chloroform as the solvent at room temperature, achieving enantioselectivities up to 96%. Theoretical calculations are used to justify the observed sense of the stereoinduction.

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The use of a trans-cyclohexanediamine benzimidazole derivative as a hydrogen-bond catalyst for the electrophilic amination of cyclic 1,3-dicarbonyl compounds is herein presented. High yields and enantioselectivities varying from moderate to excellent are generally obtained using mild reaction conditions and as low as 1 mol% of catalyst loading.

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A simple change in the polarity of the solvent allows both enantiomers of substituted succinimides to be obtained in the enantioselective conjugate addition reaction of aldehydes, mainly α,α-disubstituted, to maleimides catalysed by chiral carbamate-monoprotected trans-cyclohexane-1,2-diamines. Using a single enantiomer of the organocatalyst, both enantiomers of the resulting Michael adducts are obtained in high yields by simply changing the reaction solvent from aqueous DMF (up to 84 % ee) to chloroform (up to 86 % ee). Theoretical calculations are used to explain this uncommon reversal of the enantioselectivity; two transition state orientations of different polarities are differently favoured in polar or nonpolar solvents.

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Two series of mesoporous hybrid iron(III) complex–silica aerogels were prepared in one-pot synthesis by using the sol–gel coordination chemistry approach. The use of the ligands 3-(2-aminoethylamino)propyltrimethoxysilane and 2-(diphenylphosphino)ethyltriethoxysilane, both with terminal triethoxysilyl groups, were used to incorporate metal complexes in situ into the framework of silica, through their co-condensation with a silicon alkoxide during the aerogel formation. This methodology yielded optically translucent hybrid mesoporous gels with homogeneous metal incorporation and excellent textural properties. The catalytic performance of these materials was tested in the direct amination of allylic alcohols in water as a target reaction, with activities comparable or even higher than those corresponding to the homogeneous iron(III) complex. Furthermore, these catalysts were stable and maintained their catalytic activity after six reaction cycles.

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Bifunctional chiral 2-aminobenzimidazole derivatives 1 and 2 catalyze the enantioselective stereodivergent α-chlorination of β-ketoesters and 1,3-diketone derivatives with up to 50% ee using N-chlorosuccinimide (NCS) or 2,3,4,4,5,6-hexachloro-2,5-cyclohexadien-1-one as electrophilic chlorine sources.

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Palladium impregnated on magnetite is an efficient, cheap and easy to prepare catalyst for the direct arylation of heterocycles. Good yields are afforded under relatively mild conditions and a broad substrate scope is evident. The catalyst is regioselective in many cases, affording arylated products, at the C2- or C3-position (depending of the heterocycle used). The methodology can be extended to prepare chromenes through an intramolecular direct arylation reaction. Some evidence is provided for two catalyst deactivation pathways, which prevents efficient recycling.

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The synthesis of different tetrahydroisoquinolines using choline chloride : ethylene glycol as a deep eutectic solvent (DES) and copper(II) oxide impregnated on magnetite as a catalyst has been accomplished successfully. The copper catalyst amount is the lowest loading ever reported. The presence of DES showed to be essential since the reaction in the absence of this medium did not proceed. A direct proportional relationship was found between the conductivity of DES medium and the yield obtained. The DES and the catalyst could be reused up to ten times without any detrimental effect on the yield of the reaction, with the aerobic conditions making the protocol highly sustainable, where the only waste is water.

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Over the past decade, a great effort has been made by the chemical community to improve the efficiency of organic transformations and allow sustainable processes. Merging the use of supported and recyclable organocatalysts and aqueous conditions for the asymmetric synthesis of valuable molecules, has led to outstanding contributions in the area of green chemistry. Recent progresses in the field include the implementation of these methodologies in the large scale production of chiral molecules using automated flow chemistry.

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Among the deep eutectic solvents (DES), natural deep eutectic solvents (NADES) formed by D-glucose and racemic malic acid are suitable media to perform the enantioselective L-proline catalyzed intermolecular aldol reaction, creating simultaneously and selectively a C–C bond and a new stereocenter. The scope of the reaction was found to be broad, with products being obtained with good levels of diastereo- and enantioselectivities. Furthermore, when the reaction was performed at a large scale, the catalyst together with the reaction media can be recovered by simple water extraction and reused at least three times affording similar results. Therefore, the use of NADES as reaction media to carry out a VOC-free selective process has been demonstrated for the first time. The process is clean, cheap, simple and scalable and meets most of the criteria to be considered as a sustainable and bio-renewable process, with the reaction media and catalyst arising directly from Nature.

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Heck-arylation/cyclization was achieved using heterogeneous palladium(II) oxide impregnated on magnetite catalyst (2.5 mol%) with a lower catalyst loading than that reported for similar processes. Ethanol was used as a non-toxic and bio-renewable solvent. Good yields were afforded using a broad range of substrates (40–98%). The catalyst could be partially recycled, and analyses confirmed the almost total reduction of palladium(II) oxide to palladium(0) as well as the iodine poissoning effect, which is the main barrier to complete recyclability.

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En este trabajo se ha realizado la síntesis y caracterización de polímeros conductores como la polianilina, el poli(o-aminofenol) y además un copolímero compuesto por los dos anteriores, poli(anilina-co-o-aminofenol). Éstos pueden ser sintetizados de diversas formas, entre las cuales se ha elegido la oxidación química, ya que proporciona una mayor cantidad de producto. Para llevar a cabo las síntesis, se usa (NH4)2S2O8 como agente oxidante en proporción estequiométrica con el reactivo principal para sintetizar cada uno de los polímeros. Se realiza una medida del potencial de la disolución y una vez finalizada la reacción, se filtran y lavan los productos obtenidos con ácido clorhídrico y agua. En el caso de la polianilina, la mitad del producto obtenido, es lavado además con amoníaco, para obtener la polianilina emeraldina base. Una vez sintetizados todos los polímeros, se procede a la caracterización de cada uno de ellos mediante diferentes técnicas. Mediante análisis elemental, se obtienen los porcentajes másicos y se relacionan con las estructuras teóricas de cada polímero sintetizado. Con los espectros de IR obtenidos con FTIR, se comprueban cuáles son las bandas más importantes de las estructuras químicas. A través de la técnica de XPS se observan las energías de ligadura de cada uno de los átomos presentes en los polímeros, pudiendo así determinar porcentajes atómicos y másicos y el grado de dopaje de cada una de las muestras. Mediante la solubilidad, se comprueba que los polímeros conductores presentan una baja solubilidad, pero que utilizando el disolvente adecuado y modificando la polianilina, se puede aumentar ese valor de solubilidad. Por último, al medir la conductividad eléctrica, se observa que la polianilina sintetizada presenta una adecuada conductividad, y que el copolímero también la presenta pero con varios órdenes de magnitud menor.

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Es bien conocido por todos el problema de la contaminación ambiental y las consecuencias que acarrea, tanto para la conservación del medio ambiente como para la salud humana. A raíz de dichos problemas dentro de la química surge una nueva corriente denominada Química Verde cuyo objetivo es hacer un uso responsable de la química tratando de mitigar o eliminar los efectos derivados de la misma relacionados con la contaminación. Dentro de los contaminantes más importantes se destacan los gases de efecto invernadero entre los cuales se encuentra el dióxido de carbono, uno de los más abundantes. Por otra parte, si se analizan los procesos de síntesis orgánica desde el punto de vista de la contaminación que puedan generar, una parte influyente son los componentes orgánicos volátiles empleados como disolventes, por lo que estudios recientes proponen como alternativa otro tipo de disolventes que sean biorenovables, como es el caso de los mezclas eutécticas de bajo punto de fusión. Dado que el CO2 tiene un papel importante en la síntesis orgánica, ya que se trata de un equivalente sintético de un carbono y al mismo tiempo es una fuente de carbono renovable, se ha planteado su uso como reactivo en transformaciones orgánicas. Concretamente, este trabajo se ha centrado en las reacciones de síntesis de carbonatos cíclicos por reacción de epóxidos con dióxido de carbono, catalizadas por complejos metálicos. Además con el fin de hacer este proceso más atractivo desde el punto de vista medioambiental se ha llevado a cabo dicha reacción utilizando disolventes eutécticos como alternativa a los disolventes orgánicos clásicos.

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The synthesis of constrained spirocycles is achieved effectively by means of 1,3-dipolar cyclodditions employing α-imino γ-lactones as azomethine ylide precursors and nitroalkenes as dipolarophiles. The complex formed by (R,R)-Me-DuPhos 18 and AgF is the most efficient bifunctional catalyst. Final spiro-nitroprolinates cycloadducts are obtained in good to moderate yields and both high diastereo- and enantioselectivities. Density functional theory (DFT) calculations supported the expected absolute configuration as well as other stereochemical parameters.

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A metal-free dehydrogenative lactonization of 2-arylbenzoic acids at room temperature was developed. This work illustrates the first application of visible-light photoredox catalysis in the preparation of benzo-3,4-coumarins, an important structural motif in bioactive molecules. The combination of photocatalyst [Acr+-Mes] with (NH4)2S2O8 as a terminal oxidant provides an economical and environmentally benign entry to different substituted benzocoumarins. Preliminary mechanistic studies suggest that this reaction most likely occurs through a homolytic aromatic substitution pathway.

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Naphthalene and biphenyl dianions are interesting compounds that can be obtained by double reduction of the corresponding arenes in solution with certain alkali metals. These dianions are highly reactive and rather elusive species with very high laying and highly delocalized electrons. They share many aspects of the reactivity of the alkali metal they originated from and consequently behave primarily as strong electron transfer (ET) reagents. We report here kinetic evidence for a different type of reactivity in their alkylation reactions with alkyl fluorides. By using cyclopropylmethyl fluoride (c-C3H5CH2F) as a very fast radical probe, we were able to settle that this alkylation does not involve the classical electron transfer reaction followed by radical coupling between diffusing radicals, but supports the alternative SN2 concerted mechanism, discerning thus this mechanistic SN2-ET dichotomy.