Wang Zuochen, Wang Zhisheng, Li Jiahui, Wang Yufeng
Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong SAR, China.
ACS Nano. 2021 Mar 23;15(3):5439-5448. doi: 10.1021/acsnano.1c00104. Epub 2021 Feb 26.
Colloidal particles with surface patches can self-assemble with high directionality, but the resulting assemblies cannot reconfigure unless the patch arrangement (number, symmetry, .) is altered. While external fields with tunable inputs can guide the assembly of dynamic structures, they encourage particle alignment relative to its shape rather than the surface patterns. Here, we report on the synthesis of metallodielectric patchy particles and their assembly under the AC electric field, which gives rise to a series of structures including two-layer alternating chains, open-brick walls, staggering stacks, and vertical chains that are directed by the patches yet reconfigurable by the field. The configurations of the assemblies (., the chains) can be further switched between a rigid and a flexible state emulating the conformations of polymers. Our work suggests that, for directed colloidal assembly, the particle complexities (patches and shapes) can be coupled with the external manipulations in a cooperative manner for creating materials with precise yet reconfigurable structures.
具有表面斑块的胶体颗粒能够以高度的方向性进行自组装,但除非改变斑块排列(数量、对称性等),否则所得的组装体无法重新配置。虽然具有可调输入的外部场可以引导动态结构的组装,但它们促使颗粒相对于其形状而非表面图案进行排列。在此,我们报道了金属介电斑块颗粒的合成及其在交流电场下的组装,这产生了一系列结构,包括两层交替链、开放式砖墙、交错堆叠以及由斑块引导但可由电场重新配置的垂直链。组装体(如链)的构型可以进一步在刚性和柔性状态之间切换,模拟聚合物的构象。我们的工作表明,对于定向胶体组装,颗粒复杂性(斑块和形状)可以与外部操纵以协同方式相结合,以创建具有精确但可重新配置结构的材料。