Köhn Serrano Melissa S, König Tobias A F, Haataja Johannes S, Löbling Tina I, Schmalz Holger, Agarwal Seema, Fery Andreas, Greiner Andreas
Macromolecular Chemistry II and Bayreuth Center for Colloids and Interfaces, Universität Bayreuth, Universitätsstraße 30, 95440, Bayreuth, Germany.
Physical Chemistry II and Bayreuth Center for Colloids and Interfaces, Universität Bayreuth, Universitätsstraße 30, 95440, Bayreuth.
Macromol Rapid Commun. 2016 Feb;37(3):215-20. doi: 10.1002/marc.201500509. Epub 2015 Dec 4.
Gold nanoparticles (AuNP) with pyridyl end-capped polystyrenes (PS-4VP) as "quasi-monodentate" ligands self-assemble into ordered PS-4VP/AuNP nanostructures with 3D hexagonal spatial order in the dried solid state. The key for the formation of these ordered structures is the modulation of the ratio AuNP versus ligands, which proves the importance of ligand design and quantity for the preparation of novel ordered polymer/metal nanoparticle conjugates. Although the assemblies of PS-4VP/AuNP in dispersion lack in high dimensional order, strong plasmonic interactions are observed due to close contact of AuNP. Applying temperature as an external stimulus allows the reversible distortion of plasmonic interactions within the AuNP nanocomposite structures, which can be observed directly by naked eye. The modulation of the macroscopic optical properties accompanied by this structural distortion of plasmonic interaction opens up very interesting sensoric applications.
以吡啶基封端的聚苯乙烯(PS-4VP)作为“准单齿”配体的金纳米颗粒(AuNP)在干燥固态下自组装成具有三维六方空间有序的有序PS-4VP/AuNP纳米结构。形成这些有序结构的关键是AuNP与配体比例的调节,这证明了配体设计和数量对于制备新型有序聚合物/金属纳米颗粒缀合物的重要性。尽管PS-4VP/AuNP在分散体中的组装缺乏高维有序性,但由于AuNP的紧密接触,仍观察到强烈的等离子体相互作用。将温度作为外部刺激可使AuNP纳米复合结构内的等离子体相互作用发生可逆畸变,这可以直接用肉眼观察到。伴随着这种等离子体相互作用的结构畸变而对宏观光学性质的调节开辟了非常有趣的传感应用。