ACS Nano. 2023 Jul 11;17(13):12788-12797. doi: 10.1021/acsnano.3c03929. Epub 2023 Jun 21.
Control of interparticle interactions in terms of their direction and strength highly relies on the use of anisotropic ligand grafting on nanoparticle (NP) building blocks. We report a ligand deficiency exchange strategy to achieve site-specific polymer grafting of gold nanorods (AuNRs). Patchy AuNRs with controllable surface coverage can be obtained during ligand exchange with a hydrophobic polystyrene ligand and an amphiphilic surfactant while adjusting the ligand concentration () and solvent condition ( in dimethylformamide). At a low grafting density of ≤0.08 chains/nm, dumbbell-like AuNRs with two polymer domains capped at the two ends can be synthesized through surface dewetting with a high purity of >94%. These site-specifically-modified AuNRs exhibit great colloidal stability in aqueous solution. Dumbbell-like AuNRs can further undergo supracolloidal polymerization upon thermal annealing to form one-dimensional plasmon chains of AuNRs. Such supracolloidal polymerization follows the temperature-solvent superposition principle as revealed by kinetic studies. Using the copolymerization of two AuNRs with different aspect ratios, we demonstrate the design of chain architectures by varying the reactivity of nanorod building blocks. Our results provide insights into the postsynthetic design of anisotropic NPs that potentially serve as units for polymer-guided supracolloidal self-assembly.
控制粒子间相互作用的方向和强度高度依赖于在纳米颗粒 (NP) 构建块上使用各向异性配体接枝。我们报告了一种配体缺陷交换策略,以实现金纳米棒 (AuNRs) 的特定位置聚合物接枝。通过与疏水性聚苯乙烯配体和两亲性表面活性剂进行配体交换,可以获得具有可控表面覆盖率的块状 AuNRs,同时调节配体浓度 () 和溶剂条件 (在二甲基甲酰胺中)。在低接枝密度 ≤0.08 链/nm 时,可以通过表面去湿合成具有 >94%高纯度的哑铃状 AuNRs,其两端带有两个聚合物域。这些特定位置修饰的 AuNRs 在水溶液中表现出很好的胶体稳定性。哑铃状 AuNRs 可以在热退火时进一步进行超胶体聚合,形成一维的 AuNRs 等离子体链。动力学研究表明,这种超胶体聚合遵循温度-溶剂叠加原理。通过使用两种具有不同纵横比的 AuNRs 的共聚,我们通过改变纳米棒构建块的反应性来展示链结构的设计。我们的结果为各向异性 NP 的后合成设计提供了思路,这些 NP 可能作为聚合物引导的超胶体自组装的单元。