> A combination of nanocatalyst and green chemical route (mechanochemistry) was used to generate a series of substit'/> An Efficient Approach for the Synthesis of 1,1‐bis(2‐phenyl‐3‐indolyl)ethylene Using ZnO Nanocatalyst
首页> 外文期刊>Journal of Heterocyclic Chemistry: The International Journal of Heterocyclic Chemistry >An Efficient Approach for the Synthesis of 1,1‐bis(2‐phenyl‐3‐indolyl)ethylene Using ZnO Nanocatalyst
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An Efficient Approach for the Synthesis of 1,1‐bis(2‐phenyl‐3‐indolyl)ethylene Using ZnO Nanocatalyst

机译:使用ZnO纳米催化剂合成1,1-双(2-苯基-3-吲哚基)乙烯的有效方法

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> A combination of nanocatalyst and green chemical route (mechanochemistry) was used to generate a series of substituted 1,1‐bis(2‐phenyl‐3‐indolyl)ethylene derivatives ( 4a–e ) that were synthesized by reacting various 2‐arylindoles ( 1a–e ) and acetyl chloride in absolute alcohol with or without ZnO nano as catalyst via two approaches, that is, classical and green solvent‐free route. The use of ZnO nano particles is preferred to absence of catalyst in terms of short reaction time and mild reaction conditions with reusability of the catalyst. All the synthesized compounds were characterized on the basis of their elemental and spectral data (IR, proton magnetic resonance, 13 C NMR, and Mass).
机译: >纳米催化剂和绿色化学路线(机械化学)的组合用于产生 一系列取代的1,1双(2-苯基-3-吲哚基)乙烯衍生物( 4a-e / b>),通过反应各种2-芳基吲哚( 1a-e )和乙酰氯,在绝对醇中,通过两种方法,具有或不含ZnO纳米作为催化剂,即经典和绿色溶剂途径。 在短反应时间和温和的反应条件下使用ZnO纳米颗粒的使用优选在催化剂的可重复使用的反应时间和温和的反应条件下不存在催化剂。 所有合成的化合物的特征在于它们的元素和光谱数据(IR,质子磁共振, 13-sup> C NMR和质量)。

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