Morones J Ruben, Frey Wolfgang
Departments of Chemical and Biomedical Engineering and Center for Nano and Molecular Science and Technology, The University of Texas at Austin, 1 University Station, C0800, Austin, TX 78712, USA.
Langmuir. 2007 Jul 17;23(15):8180-6. doi: 10.1021/la7008336. Epub 2007 Jun 23.
Metal nanoparticles combined with environmentally sensitive polymers can lead to enhanced nanometer-sized switches. We present a silver nanoparticle synthesis method that uses poly(N-isopropylacrylamide) (PNIPAM) as the nucleating, capping, and stabilizing agent. The synthesis is performed at room temperature by sodium borohydride-mediated reduction of silver nitrate in the presence of a fully hydrated polymer. The resulting metal nanoparticles have a narrow size distribution comparable to or better than those achieved with other synthesis methods. The silver particles can be thermally precipitated by the collapse of the PNIPAM shell and resolubilized with fast response times, as shown by surface plasmon spectroscopy. The silver-PNIPAM composite allows for combined surface plasmon and thermal switching applications.
金属纳米颗粒与环境敏感聚合物相结合可产生增强的纳米级开关。我们提出了一种银纳米颗粒合成方法,该方法使用聚(N-异丙基丙烯酰胺)(PNIPAM)作为成核、封端和稳定剂。合成过程在室温下通过硼氢化钠在完全水合聚合物存在下介导硝酸银的还原进行。所得金属纳米颗粒具有窄尺寸分布,与其他合成方法所获得的相当或更好。如表面等离子体光谱所示,银颗粒可通过PNIPAM壳的塌陷而热沉淀,并能以快速响应时间重新溶解。银-PNIPAM复合材料可用于表面等离子体和热开关联合应用。