首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Design and Development of a Heterogeneous Catalyst for the Michael Addition of Malononitrile to 2-Enoylpyridines: Influence of the Primary Amide Decorated Framework on Catalytic Activity and Selectivity
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Design and Development of a Heterogeneous Catalyst for the Michael Addition of Malononitrile to 2-Enoylpyridines: Influence of the Primary Amide Decorated Framework on Catalytic Activity and Selectivity

机译:迈克尔的非均相催化剂的设计与开发玛硫腈至2-烯丙基吡啶:原发性酰胺装饰框架对催化活性和选择性的影响

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摘要

For the Michael addition of malononitrile to 2-enoylpyridines, we report the first heterogeneous catalyst, {[Zn-2(2-bpbg)(fum)(2)]center dot 4H(2)O center dot EtOH}(n) (1) (where 2-bpbg = N,N'-bis(2-pyridylmethyl)-1,4-diaminobutane-N,N'-diacetamide and where fum = fumarate), which is decorated with primary amide side arms. It is prepared from the self-assembly of starting materials in methanol at room temperature (27 degrees C). Using 3 mol % of 1, greater than 99% conversion of substrates to the desired product is achieved within 1 h at 27 degrees C. Moreover, the catalyst is recyclable up to five consecutive cycles without significant loss of activity and structural integrity. In order to show the uniqueness of 1, the reaction under the same conditions was catalyzed by a fully pyridyl-based (i.e., having no primary amide group) and isostructural analogue, {[Zn-2(tpbn)(fum)(2)]center dot 6H(2)O}(n) (2) (where tpbn = N',N',N '',N ''-tetrakis(pyridin-2-ylmethyl)butane-1,4-diamine), but resulting only in 7% conversion. This demonstrates the selective catalytic activity of 1 over 2 due to the presence of the primary amide side arms, where it acts as a bifunctional catalyst through the excellent hydrogen bond donating (HBD) ability in this reaction. For providing an insight into its mechanism of action involving a cyclic seven-membered hydrogen bonding motif, the reaction was performed with freshly synthesized (E)-chalcone, 3-enoylpyridine, and 4-enoylpyridine instead of 2-enoylpyridine under the same conditions. In the case of (E)-chalcone no product formation was observed, whereas for 3-enoylpyridine and 4-enoylpyridine the conversions were only 29% and 25%, respectively. Both 1 and 2 were fully characterized by infrared spectroscopy, elemental analysis, thermogravimetric analysis, and single-crystal and powder X-ray diffraction.
机译:对于迈克尔加入丙二腈至2-烯丙基吡啶,我们报告了第一非均相催化剂,{[Zn-2(2-BPBG)(FUM)(2)]中心点4H(2)O中心点EtOH}(n)( 1)(其中2-BPBG = N,N'-BIS(2-吡啶基甲基)-1,4-二氨基丁烷-N,N'-二乙酰胺和FUM =富马酸酯),其用初级酰胺侧臂装饰。它由在室温(27℃)的甲醇中的起始材料的自组装制备。使用3摩尔%的1,在27℃的1小时内实现大于99%的基材转化为所需产物。此外,催化剂可再循环至5个连续五个循环,而不会显着丧失活性和结构完整性。为了表现出1的唯一性,通过基于吡啶基的(即,没有伯酰胺基团)和isostrontuctoral类似物,{[Zn-2(TPBN)(FUM)(2),反应催化在相同的条件下催化。 ]中心点6H(2)O}(N)(2)(其中TPBN = N',N',N',N'' - 丁烷-1,4-二胺),但是只有7%的转换。这证明了由于初级酰胺侧臂的存在,通过初级酰胺侧臂的存在,通过优异的氢键在该反应中的优异氢键(HBD)能力作用为双官能催化剂。为了提供涉及涉及环七元氢键基丝的作用机理的洞察,在相同条件下,用新合成(e)淀粉酮,3-烯丙啶和4-烯丙啶,而是在相同的条件下代替2-烯丙基吡啶进行反应。在(e)的情况下 - 不观察到产物形成,而3-烯丙基吡啶和4-烯吡啶,则转化仅为29%和25%。 1和2均通过红外光谱,元素分析,热重分析和单晶和粉末X射线衍射完全表征。

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