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Rapid and continuous synthesis of cobalt aluminate nanoparticles under subcritical hydrothermal conditions with in-situ surface modification

机译:亚临界水热条件下原位表面改性快速连续合成铝酸钴纳米粒子

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摘要

The synthesis and in-situ organic surface modification of spinel cobalt aluminate nanoparticles were carried out under subcritical reducing hydrothermal conditions (250°C, 30MPa). Single nanoparticles of cobalt aluminate were obtained using a continuous flow-type reactor; in contrast, Co_(1-x)Al_x layered double hydroxide (Co-Al-LDHs) became the main product when a batch-type reactor was used. The addition of a surface modifier, hexanoic acid, to the flow-type reaction system changed the hydrophilic surface of the nanoparticles to a hydrophobic surface. Cobalt aluminate nanoparticles modified with hexanoic acid were well dispersed in hexane. The in-situ surface modification during the synthesis of the nanoparticles reduced the particle size from 15nm to 10nm.
机译:尖晶石型铝酸钴钴的合成和原位有机表面改性是在亚临界还原水热条件(250°C,30MPa)下进行的。使用连续流式反应器获得铝酸钴的单个纳米颗粒;相反,当使用间歇式反应器时,Co_(1-x)Al_x层状双氢氧化物(Co-Al-LDHs)成为主要产品。在流动型反应系统中添加表面改性剂己酸可将纳米颗粒的亲水性表面变为疏水性表面。用己酸改性的铝酸钴纳米颗粒充分分散在己烷中。纳米粒子合成过程中的原位表面改性将粒径从15nm减小到10nm。

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