Faculty of Chemistry, Department of Chemical Technology, Gdansk University of Technology, G. Narutowicza 11/12, Gdansk 80-233, Poland.
Faculty of Chemistry, Department of Environmental Technology, University of Gdansk, Wita Stwosza 63, Gdansk 80-308, Poland.
Adv Colloid Interface Sci. 2016 Apr;230:13-28. doi: 10.1016/j.cis.2015.08.006. Epub 2015 Aug 18.
Ionic liquids (ILs) are a broad group of organic salts of varying structure and properties, used in energy conversion and storage, chemical analysis, separation processes, as well as in the preparation of particles in nano- and microscale. In material engineering, ionic liquids are applied to synthesize mainly metal nanoparticles and 3D semiconductor microparticles. They could generally serve as a structuring agent or as a reaction medium (solvent). This review deals with the resent progress in general understanding of the ILs role in particle growth and stabilization and the application of ionic liquids for nano- and microparticles synthesis. The first part of the paper is focused on the interactions between ionic liquids and growing particles. The stabilization of growing particles by steric hindrance, electrostatic interaction, solvation forces, viscous stabilization, and ability of ILs to serve as a soft template is detailed discussed. For the first time, the miscellaneous role of the ILs in nano- and microparticle preparation composed of metals as well as semiconductors is collected, and the formation mechanisms are graphically presented and discussed based on their structure and selected properties. The second part of the paper gives a comprehensive overview of recent experimental studies dealing with the applications of ionic liquids for preparation of metal and semiconductor-based nano- and microparticles. A wide spectrum of preparation routes using ionic liquids are presented, including precipitation, sol-gel technique, hydrothermal method, nanocasting, and microwave or ultrasound-mediated methods.
离子液体(ILs)是一类结构和性质多样的有机盐,用于能量转换和储存、化学分析、分离过程,以及纳米和微尺度颗粒的制备。在材料工程中,离子液体主要用于合成金属纳米颗粒和 3D 半导体微颗粒。它们通常可以作为结构剂或反应介质(溶剂)。本综述涉及离子液体在颗粒生长和稳定中的作用以及离子液体在纳米和微颗粒合成中的应用的最新进展。本文的第一部分重点讨论了离子液体与生长颗粒之间的相互作用。详细讨论了通过空间位阻、静电相互作用、溶剂化力、粘性稳定和离子液体作为软模板的能力稳定生长颗粒。首次收集了由金属以及半导体组成的纳米和微颗粒制备中离子液体的各种作用,并根据其结构和选定的性质以图形方式呈现和讨论了形成机制。本文的第二部分全面概述了最近关于离子液体在制备金属和半导体基纳米和微颗粒中的应用的实验研究。提出了广泛的使用离子液体的制备途径,包括沉淀、溶胶-凝胶技术、水热法、纳米铸造和微波或超声介导的方法。