Pawar Amar B, Kretzschmar Ilona
Complex Fluids Research, Procter and Gamble Co., 8256 Union Center Blvd. West Chester OH 45069, USA.
Macromol Rapid Commun. 2010 Jan 18;31(2):150-68. doi: 10.1002/marc.200900614. Epub 2010 Jan 5.
The site-specific engineering of colloidal surfaces has provided a powerful approach to pushing the boundaries of today's materials research. The resulting surface-anisotropic and patchy particles have become the center of vital research areas, ranging from the need for large-scale fabrication techniques to exploring new applications of these materials. This Review summarizes patchy particle fabrication techniques, including but not limited to particle and nanosphere lithography and glancing-angle deposition. The variety of existing patchy particle fabrication techniques is revealed and the need for a scalable approach to high-volume patchy particle production is identified. Ongoing modeling efforts describing patchy particle interactions and properties are reviewed as potential predictive tools. Research endeavors that deal with the directed assembly of patchy particles in electric and magnetic fields, as well as with supraparticular assembly through chemical interactions, are discussed. The Review is concluded with a note on the future application of patchy particles as phoretic motors.
胶体表面的位点特异性工程为突破当今材料研究的边界提供了一种强大的方法。由此产生的表面各向异性和补丁状颗粒已成为重要研究领域的核心,涵盖了从大规模制造技术的需求到探索这些材料的新应用等方面。本综述总结了补丁状颗粒的制造技术,包括但不限于颗粒和纳米球光刻以及掠角沉积。揭示了现有补丁状颗粒制造技术的多样性,并确定了对大规模生产补丁状颗粒的可扩展方法的需求。对描述补丁状颗粒相互作用和性质的现有建模工作作为潜在的预测工具进行了综述。讨论了涉及补丁状颗粒在电场和磁场中的定向组装以及通过化学相互作用进行超颗粒组装的研究工作。综述最后提到了补丁状颗粒作为电泳马达的未来应用。