Chassagne Paul, Garrigue Patrick, Kuhn Alexander
Univ. Bordeaux, CNRS, Bordeaux INP, ISM, UMR 5255, 16 av. Pey Berland, Pessac, 33600, France.
Adv Mater. 2024 Feb;36(6):e2307539. doi: 10.1002/adma.202307539. Epub 2023 Dec 6.
Asymmetric modification of particles with various patches of different composition and size at predefined positions is an important challenge in contemporary surface chemistry, as such particles have numerous potential applications, ranging from materials science and (photo)catalysis to self-assembly and drug delivery. However, approaches allowing the synthesis of this kind of complex objects in the bulk of a solution in a straightforward way are currently lacking. In this context, bipolar electrochemistry (BE) is a powerful technique for the asymmetric modification of conducting objects. Herein, this approach is used for the highly controlled modification of particles with different metal patches, generated at specific locations of isotropic objects. The synthesis is carried out in the bulk of the solution and leads to predefined patterns of increasing complexity, including even a specific chiral arrangement of the patches.
在预定义位置对具有不同组成和尺寸的各种斑块的颗粒进行不对称修饰是当代表面化学中的一项重要挑战,因为此类颗粒具有众多潜在应用,从材料科学和(光)催化到自组装和药物递送。然而,目前缺乏能够以直接方式在大量溶液中合成这类复杂物体的方法。在这种背景下,双极电化学(BE)是一种用于对导电物体进行不对称修饰的强大技术。在此,该方法用于对具有不同金属斑块的颗粒进行高度可控的修饰,这些斑块在各向同性物体的特定位置生成。合成在大量溶液中进行,并产生复杂度不断增加的预定义图案,甚至包括斑块的特定手性排列。