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Enhanced Catalytic Properties of Carbon supported Zirconia and Sulfated Zirconia for the Green Synthesis of Benzodiazepines

机译:增强碳负载氧化锆和硫酸化氧化锆的催化性质,用于苯并二氮杂卓的绿色合成

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摘要

This work reports for the first time a new series of promising porous catalytic carbon materials, functionalized with Lewis and Bronsted acid sites useful in the green synthesis of 2,3-dihydro-1H-1,5-benzodiazepine - nitrogen heterocyclic compounds. Benzodiazepines and derivatives are fine chemicals exhibiting interesting therapeutic properties. Carbon materials have been barely investigated in the synthesis of this type of compounds. Two commercial carbon materials were selected exhibiting different textural properties: i) Norit RX3 (N) as microporous sample and ii) mesoporous xerogel (X), both used as supports of ZrO2 (Zr) and ZrO2/SO42- (SZr). The supported SZr led to higher conversion values and selectivities to the target benzodiazepine. Both chemical and textural properties influenced significantly the catalytic performance. Particularly relevant are the results concerning the non-sulfated samples, NZr and XZr, that were able to catalyze the reaction leading to the target benzodiazepine with high selectivity (up to 80 %; 2 h). These results indicated an important role of the carbon own surface functional groups, avoiding the use of H2SO4. Even very low amounts of SZr supported on carbon reveal high activity and selectivity. Therefore, the carbon materials herein reported can be considered an efficient and sustainable alternative bifunctional catalysts for the benzodiazepine synthesis.
机译:这项工作报告了第一次新的有前途的多孔催化碳材料,其用Lewis和伪造酸位点官能化,可用于2,3-二氢-1H-1,5-苯并二氮杂氮杂氮杂氮杂环氮杂杂环化合物。苯二氮卓和衍生物是具有有趣治疗性质的精细化学品。在这种类型的化合物的合成中勉强研究了碳材料。选择两种商业碳材料,其表现出不同的纹理性质:I)诺芮特RX3(n)作为微孔样品和II)介孔Xerogel(X),兼用作ZrO2(Zr)和ZrO2 / SO42-(SZR)的载体。支持的SZR导致靶苯二氮卓的转化值和选择性较高。化学和纹理性质的影响显着影响催化性能。特别是相关的是关于非硫酸化样品,NZR和XZR的结果,其能够催化导致靶苯二氮卓的反应具有高选择性(高达80%; 2小时)。这些结果表明了碳自身表面官能团的重要作用,避免了H2SO4的使用。碳均匀的SZR甚至是碳的甚至很多SZR都显示出高活性和选择性。因此,本文报道的碳材料可被认为是苯二氮卓合成的有效和可持续的替代双官能催化剂。

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