材料科学
纳米技术
沉积(地质)
接口(物质)
电化学
氧化还原
表面改性
微球
电极
化学工程
化学
毛细管作用
沉积物
冶金
复合材料
古生物学
物理化学
工程类
生物
毛细管数
作者
Bing Xie,Yuheng Fu,Zhongshun Wang,Yun Li,Qunyan Zhu,Lin Zhang,Wensheng Yang,Alexander Kuhn
标识
DOI:10.1002/adma.202506777
摘要
Multicomponent patchy particles offer unique opportunities for diverse applications, yet their controlled synthesis remains challenging. Here a strategy is presented that allows generating complex microparticles, having distinct patches of different chemical composition, by using a one-pot and single-step approach. The concept is based on the synergetic combination of bipolar electrochemistry and a water/organic (w/o) interface as the reaction space. Positioning conducting microspheres at the w/o interface allows for targeted surface modification with multiple components. Under the influence of an applied electric field, oriented parallel to the interface, simultaneous redox reactions in both phases lead to the selective deposition of up to four different materials at opposite faces of the particles. This very versatile approach can also be extended beyond spherical particles for the controlled modification of 2D materials. The simplicity of the method and the inherent precise control over multiple functional components allows for the design of advanced multicomponent patchy particles, which cannot be obtained by any other deposition process.
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