Materials Research Laboratory, University of California, Santa Barbara, California 93106, USA.
J Am Chem Soc. 2011 Oct 26;133(42):16986-96. doi: 10.1021/ja206615c. Epub 2011 Oct 4.
We report a facile strategy to synthesize amphiphilic gold (Au) nanoparticles functionalized with a multilayer, micelle-like structure consisting of a Au core, an inner hydroxylated polyisoprene (PIOH) layer, and an outer polystyrene shell (PS). Careful control of enthalpic interactions via a systematic variation of structural parameters, such as number of hydroxyl groups per ligand (N(OH)) and styrene repeating units (N(PS)) as well as areal chain density of ligands on the Au-core surface (Σ), enables precise control of the spatial distribution of these nanoparticles. This control was demonstrated in a lamellae-forming poly(styrene-b-2-vinylpyridine) (PS-b-P2VP) diblock copolymer matrix, where the favorable hydrogen-bonding interaction between hydroxyl groups in the PIOH inner shell and P2VP chains in the PS-b-P2VP diblock copolymer matrix, driving the nanoparticles to be segregated in P2VP domains, could be counter balanced by the enthalphic penalty of mixing of the PS outer brush with the P2VP domains. By varying N(OH), N(PS), and Σ, the nanoparticles could be positioned in the PS or P2VP domains or at the PS/P2VP interface. In addition, the effect of additives interfering with the hydrogen-bond formation between hydroxyl groups on Au nanoparticles and P2VP chains in a diblock copolymer matrix was investigated, and an interesting pea-pod-like segregation of Au nanoparticles in PS domains was observed.
我们报告了一种简便的策略,可合成具有多层胶束状结构的两亲性金(Au)纳米粒子,该结构由 Au 核、内层羟基化聚异戊二烯(PIOH)层和外层聚苯乙烯壳(PS)组成。通过系统地改变结构参数(例如每个配体的羟基数(N(OH))和苯乙烯重复单元数(N(PS))以及 Au 核表面配体的面链密度(Σ))来控制焓相互作用,可以精确控制这些纳米粒子的空间分布。在形成层状的聚(苯乙烯-b-2-乙烯基吡啶)(PS-b-P2VP)嵌段共聚物基质中证明了这种控制,其中 PIOH 内层中的羟基与 PS-b-P2VP 嵌段共聚物基质中的 P2VP 链之间的有利氢键相互作用,驱使纳米粒子在 P2VP 区中分离,可通过 PS 外层刷与 P2VP 区混合的焓罚衡来抵消。通过改变 N(OH),N(PS)和Σ,可以将纳米粒子定位在 PS 或 P2VP 区或 PS/P2VP 界面处。此外,还研究了添加剂对 Au 纳米粒子与嵌段共聚物基质中 P2VP 链之间氢键形成的干扰作用,观察到 Au 纳米粒子在 PS 区中的有趣的豌豆荚状分离。