He Tengyu, Jokerst Jesse V
Materials Science and Engineering Program, University of California, San Diego, La Jolla, CA 92093, USA.
Biomater Sci. 2020 Oct 21;8(20):5555-5573. doi: 10.1039/d0bm01313g. Epub 2020 Sep 28.
The development of synthetic methods for micro/nano materials with precisely controlled structures, morphologies, and local compositions is of great importance for the advancement of modern nanotechnology. The electrospray method is a "platform" approach for the preparation of a broad range of micro-/nanostructures; electrospray is simple and scalable. This review summarizes recent research on the micro-/nanostructures prepared via the electrospray route. These include spherical structures (e.g. simple, porous, Janus, and core-shell particles), non-spherical structures (e.g. red blood cell-like and spindle-like particles, multi-compartment microrods, 2D holey nanosheets, and nanopyramids), and assembled structures. The experimental details, underlying physical/chemical principles, and key benefits of these structures are comprehensively discussed. The effects and importance of nozzle design, properties of feeding solutions (e.g. concentration of solute, polymer additives, solvent/nonsolvent combinations), working environment (e.g. temperature and humidity), and types of collection media are highlighted.
开发具有精确可控结构、形态和局部组成的微/纳米材料合成方法对于现代纳米技术的进步至关重要。电喷雾法是一种制备多种微/纳米结构的“平台”方法;电喷雾简单且可扩展。本综述总结了通过电喷雾途径制备微/纳米结构的最新研究。这些结构包括球形结构(如简单颗粒、多孔颗粒、Janus颗粒和核壳颗粒)、非球形结构(如红细胞状和纺锤状颗粒、多隔室微棒、二维多孔纳米片和纳米金字塔)以及组装结构。全面讨论了这些结构的实验细节、潜在的物理/化学原理和关键优势。突出了喷嘴设计、进料溶液性质(如溶质浓度、聚合物添加剂、溶剂/非溶剂组合)、工作环境(如温度和湿度)以及收集介质类型的影响和重要性。