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首页> 外文期刊>RSC Advances >Silica nanospheres supported diazafluorene iron complex: an efficient and versatile nanocatalyst for the synthesis of propargylamines from terminal alkynes, dihalomethane and amines
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Silica nanospheres supported diazafluorene iron complex: an efficient and versatile nanocatalyst for the synthesis of propargylamines from terminal alkynes, dihalomethane and amines

机译:二氧化硅纳米球负载的重氮芴铁络合物:一种高效且通用的纳米催化剂,用于从末端炔烃,二卤甲烷和胺类合成炔丙基胺

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摘要

We present the synthesis of an efficient heterogeneous silica nanosphere supported iron catalyst (SiO2@APTES@DAFO-Fe) and its catalytic application in a one pot three-component coupling reaction of terminal alkynes, dihalomethane and secondary amines for the facile synthesis of propargylamines. The synthesized SiO2@APTES@DAFO-Fe nanocatalyst has been systematically characterized by solid-state C-13 CPMAS and Si-29 CPMAS NMR spectroscopy, fourier transform infrared spectroscopy (FT-IR), transmission electron microscopy (TEM), Brunauer-Emmett-Teller (BET) surface area analysis, scanning electron microscopy (SEM), atomic absorption spectroscopy (AAS), energy dispersive X-ray fluorescence spectroscopy (ED-XRF), and elemental analysis. The nanocatalyst exhibits high catalytic performance for the coupling reaction of aromatic terminal alkynes, dichloromethane and secondary amines to afford propargylamines. In order to achieve high catalytic efficacy, the effect of various reaction parameters such as temperature, base, the amount of catalyst, reaction time, type of solvent, substrate molar ratio etc. have been investigated. Furthermore, the recovery and reuse of the quasi-homogeneous nanocatalyst have been demonstrated several times without any appreciable loss in its catalytic activity. Apart from this, FT-IR, SEM and HRTEM techniques are employed in order to prove the stability of the reused nano-catalyst. The present protocol works under mild reaction conditions with the additional advantages of a simple work-up procedure, high product yield, and easy recovery and reusability of the nanostructured catalyst. It is noteworthy that this atom economical methodology does not require an additional co-catalyst or activator. A tentative mechanism is also proposed for the one pot coupling reaction for the synthesis of propargylamines.
机译:我们提出了一种高效的均相二氧化硅纳米球负载的铁催化剂(SiO2 @ APTES @ DAFO-Fe)的合成及其在末端炔烃,二卤甲烷和仲胺的一锅三组分偶联反应中的催化应用,以方便地合成炔丙基胺。合成的SiO2 @ APTES @ DAFO-Fe纳米催化剂已通过固态C-13 CPMAS和Si-29 CPMAS NMR光谱,傅立叶变换红外光谱(FT-IR),透射电子显微镜(TEM),Brunauer-Emmett进行了系统表征-Teller(BET)表面积分析,扫描电子显微镜(SEM),原子吸收光谱(AAS),能量色散X射线荧光光谱(ED-XRF)和元素分析。该纳米催化剂对于芳族末端炔烃,二氯甲烷和仲胺的偶联反应表现出高催化性能,从而提供炔丙基胺。为了获得高催化效率,已经研究了各种反应参数如温度,碱,催化剂量,反应时间,溶剂类型,底物摩尔比等的影响。此外,已经多次证实了准均相纳米催化剂的回收和再利用,而其催化活性没有任何明显的损失。除此之外,还使用FT-IR,SEM和HRTEM技术来证明重复使用的纳米催化剂的稳定性。本方案在温和的反应条件下工作,具有以下优点:后处理简单,产物收率高,纳米结构催化剂易于回收和再利用。值得注意的是,这种原子经济的方法不需要额外的助催化剂或活化剂。还提出了一种用于炔丙基胺合成的单锅偶联反应的试验机制。

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