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Microemulsions: Options To Expand the Synthesis of Inorganic Nanoparticles

机译:微乳液:扩大无机纳米颗粒合成的选择

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摘要

Microemulsions (MEs) are ideal for obtaining high-quality inorganic nanoparticles. As thermodynamically stable systems with a nanometer-sized droplet phase that serves as a nanoreactor, MEs have obvious advantages for the synthesis of nanoparticles. MEs also have disadvantages, such as their complexity as multicomponent systems, the low amount of obtainable nanoparticles, their limited thermal stability, the fact that hydrolyzable or oxidizable compounds are often excluded from synthesis, the partly elaborate separation of nanoparticles, as well as the removal of surface-adhered surfactants subsequent to synthesis. This Review presents some strategies to further expand the options of ME-based synthesis of inorganic nanoparticles. This comprises the crystallization of nanoparticles in high-temperature MEs, the synthesis of hollow nanospheres, the use of hydrogen peroxide or liquid ammonia as the polar droplet phase, and the synthesis of base metals and nitrides in MEs.
机译:微乳液(ME)是获得高质量无机纳米粒子的理想选择。作为具有纳米级液滴相的热力学稳定系统,它作为纳米反应器,在合成纳米颗粒方面具有​​明显的优势。 ME还具有缺点,例如多组分系统的复杂性,可得到的纳米颗粒数量少,热稳定性有限,可水解或可氧化的化合物通常被排除在合成范围之外,纳米颗粒的部分精心分离以及去除等缺点。合成后制备表面粘附的表面活性剂。这篇综述提出了一些策略,以进一步扩展基于ME的无机纳米颗粒合成的选择。这包括高温ME中纳米颗粒的结晶,中空纳米球的合成,过氧化氢或液氨作为极性液滴相的使用以及ME中贱金属和氮化物的合成。

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