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首页> 外文期刊>Chemistry: A European journal >Controlled Synthesis of Fe3O4/ZIF-8 Nanoparticles for Magnetically Separable Nanocatalysts
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Controlled Synthesis of Fe3O4/ZIF-8 Nanoparticles for Magnetically Separable Nanocatalysts

机译:磁性可分离纳米催化剂的Fe3O4 / ZIF-8纳米粒子的控制合成

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Fe3O4/ZIF-8 nanoparticles were synthesized through a room-temperature reaction between 2-methylimidazolate and zinc nitrate in the presence of Fe3O4 nanocrystals. The particle size, surface charge, and magnetic loading can be conveniently controlled by the dosage of Zn(NO3)(2) and Fe3O4 nanocrystals. The as-prepared particles show both good thermal stability (stable to 550 degrees C) and large surface area (1174 m(2)g(-1)). The nanoparticles also have a superparamagnetic response, so that they can strongly respond to an external field during magnetic separation and disperse back into the solution after withdrawal of the magnetic field. For the Knoevenagel reaction, which is catalyzed by alkaline active sites on external surface of catalyst, small Fe3O4/ZIF-8 nanoparticles show a higher catalytic activity. At the same time, the nanocatalysts can be continuously used in multiple catalytic reactions through magnetic separation, activation, and redispersion with little loss of activity.
机译:Fe3O4 / ZIF-8纳米粒子是在Fe3O4纳米晶体的存在下,通过2-甲基咪唑酸酯和硝酸锌之间的室温反应合成的。 Zn(NO3)(2)和Fe3O4纳米晶体的剂量可以方便地控制颗粒大小,表面电荷和磁性负载。所制备的颗粒显示出良好的热稳定性(稳定在550摄氏度)和较大的表面积(1174 m(2)g(-1))。纳米粒子还具有超顺磁响应,因此它们可以在磁分离期间强烈响应外部磁场,并在撤回磁场后重新分散回溶液中。对于由催化剂外表面上的碱性活性位点催化的Knoevenagel反应,小的Fe3O4 / ZIF-8纳米颗粒表现出更高的催化活性。同时,纳米催化剂可以通过磁分离,活化和再分散而连续地用于多种催化反应中,而活性几乎没有损失。

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