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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >One-step synthesis of amine-functionalized thermo-responsive magnetite nanoparticles and single-crystal hollow structures
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One-step synthesis of amine-functionalized thermo-responsive magnetite nanoparticles and single-crystal hollow structures

机译:胺官能化热响应磁铁矿纳米粒子和单晶空心结构的一步合成

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A high-temperature Solution phase hydrolysis has been developed for the synthesis of amine-functionalized Fe3O4 nanostructures. The concentrations of the reagents and the reaction time have great influence on the morphologies of the products. Increasing the amounts of poly (propylene glycol) his (2-aminopropyl ether) transformed the product morphology from hollow nanostructures to magnetite nanoparticles. Single-crystal solid spherical aggregates, hollow spheres, loose nanoclusters and polyhedral-like magnetite particles can be selectively synthesized by varying the synthesis parameters, including the reaction time or the weight ratio of iron precursors to polyetheramine. The morphological transformation Could be attributed to the cooperation of oriented aggregation and Ostwald ripening mechanisms. By using poly (propylene glycol) bis (2-aminopropyl ether) as the capping agent, the amine-functionalized nanoparticles show high water dispersibility and thermo-responsive. In addition, the Pickering emulsion stabilized by amine-functionalized nanoparticles was fabricated. One of the most promising applications of the as-prepared single-crystal hollow structures is as Support materials for biological testing, catalysis and targeted drug delivery.
机译:已开发出一种高温溶液相水解法,用于合成胺官能化的Fe3O4纳米结构。试剂的浓度和反应时间对产物的形态有很大的影响。增加聚丙二醇的量,他的(2-氨基丙基醚)将产物形态从空心纳米结构转变为磁铁矿纳米颗粒。通过改变合成参数,包括反应时间或铁前体与聚醚胺的重量比,可以选择性地合成单晶固体球形聚集体,空心球,疏松的纳米团簇和多面体状磁铁矿颗粒。形态转化可以归因于定向聚集和奥斯特瓦尔德成熟机制的合作。通过使用聚(丙二醇)双(2-氨基丙基醚)作为封端剂,胺官能化的纳米颗粒显示出高的水分散性和热响应性。另外,制备了由胺官能化的纳米颗粒稳定的Pickering乳液。所制备的单晶空心结构最有希望的应用之一是用作生物测试,催化和靶向药物递送的载体材料。

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