Graduate School of Materials Science, Nara Institute of Science and Technology (NAIST) , Ikoma, Nara 630-0192, Japan.
Department of Mechanical Engineering, Kindai Unversity , Higashiosaka, Osaka 577-8502, Japan.
ACS Nano. 2017 Sep 26;11(9):9312-9320. doi: 10.1021/acsnano.7b04719. Epub 2017 Sep 8.
Site-selective surface modification on the shape-controlled nanocrystals is a key approach in the programmed self-assembly of inorganic colloidal materials. This study demonstrates a simple methodology to gain self-assemblies of semiconductor nanocrystals with branched shapes through tip-to-tip attachment. Short-chained water-soluble cationic thiols are employed as a surface ligand for CdSe tetrapods and CdSe/CdS core/shell octapods. Because of the less affinity of arm-tip to the surface ligands compared to the arm-side wall, the tip-surface becomes uncapped to give a hydrophobic nature, affording an amphiphilic surface pattern. The amphiphilic tetrapods aggregated into porous agglomerates through tip-to-tip connection in water, while they afforded a hexagonally arranged Kagome-like two-dimensional (2D) assembly by the simple casting of aqueous dispersion with the aid of a convective self-assembly mechanism. A 2D net-like assembly was similarly obtained from amphiphilic octapods. A dissipative particle dynamics simulation using a planar tripod model with an amphiphilic surface pattern reproduced the formation of the Kagome-like assembly in a 2D confined space, demonstrating that the lateral diffusion of nanoparticles and the firm contacts between the hydrophobic tips play crucial roles in the self-assembly.
在形状可控的纳米晶体上进行选择性表面修饰是实现无机胶体材料程序化自组装的关键途径。本研究通过尖端到尖端的附着展示了一种获得具有支化形状的半导体纳米晶体自组装体的简单方法。短链水溶性阳离子硫醇被用作 CdSe 四足体和 CdSe/CdS 核/壳八足体的表面配体。由于与臂侧壁相比,臂尖与表面配体的亲和力较小,因此尖端表面无帽,呈现疏水性,提供了一种两亲性表面图案。在水中,两亲性四足体通过尖端到尖端的连接聚集形成多孔团聚体,而在简单的水相分散体浇铸的帮助下,通过对流自组装机制,它们形成了具有六方排列的 Kagome 型二维(2D)组装体。类似地,从两亲性八足体中获得了二维网状组装体。使用具有两亲性表面图案的平面三脚架模型进行耗散粒子动力学模拟再现了在二维受限空间中 Kagome 型组装体的形成,表明纳米颗粒的横向扩散和疏水尖端之间的牢固接触在自组装中起着至关重要的作用。