Zhang Tianran, Lyu Dengping, Xu Wei, Feng Xuan, Ni Ran, Wang Yufeng
Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong SAR, China.
School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University, Singapore, Singapore.
Nat Commun. 2023 Dec 21;14(1):8494. doi: 10.1038/s41467-023-44154-6.
Janus particles, which have an attractive patch on the otherwise repulsive surface, have been commonly employed for anisotropic colloidal assembly. While current methods of particle synthesis allow for control over the patch size, they are generally limited to producing dome-shaped patches with a high symmetry (C). Here, we report on the synthesis of Janus particles with patches of various tunable shapes, having reduced symmetries ranging from C to C and C. The Janus particles are synthesized by partial encapsulation of an octahedral metal-organic framework particle (UiO-66) in a polymer matrix. The extent of encapsulation is precisely regulated by a stepwise, asymmetric dewetting process that exposes selected facets of the UiO-66 particle. With depletion interaction, the Janus particles spontaneously assemble into colloidal clusters reflecting the particles' shapes and patch symmetries. We observe the formation of chiral structures, whereby chirality emerges from achiral building blocks. With the ability to encode symmetry and directional bonding information, our strategy could give access to more complex colloidal superstructures through assembly.
双面粒子在其原本具有排斥性的表面上有一个吸引区域,已被广泛用于各向异性胶体组装。虽然目前的粒子合成方法能够控制吸引区域的大小,但通常仅限于生产具有高对称性(C)的圆顶形区域。在此,我们报告了具有各种可调形状区域的双面粒子的合成,这些区域的对称性降低,范围从C到C和C。双面粒子是通过将八面体金属有机框架粒子(UiO - 66)部分封装在聚合物基质中合成的。封装程度通过逐步的、不对称的去湿过程精确调节,该过程会暴露UiO - 66粒子的选定晶面。通过耗尽相互作用,双面粒子自发组装成反映粒子形状和区域对称性的胶体簇。我们观察到手性结构的形成,即手性从非手性构建块中产生。凭借编码对称性和定向键合信息的能力,我们的策略可以通过组装获得更复杂的胶体超结构。