Institute of Particle Technology, Friedrich-Alexander University Erlangen-Nuremberg, Erlangen, Germany.
Nanotechnology. 2013 Mar 22;24(11):115604. doi: 10.1088/0957-4484/24/11/115604. Epub 2013 Feb 28.
The current work presents a one-step procedure for the synthesis of amphiphilic silver nanoparticles suitable for production of silver-filled polymeric materials. This solvent free synthesis via reduction of Tollens' reagent as silver precursor in melts of amphiphilic polyesters consisting of hydrophilic poly(ethylene glycol) blocks and hydrophobic alkyl chains allows the production of silver nanoparticles without any by-product formation. This makes them especially interesting for the production of medical devices with antimicrobial properties. In this article the influences of the chain length of the hydrophobic block in the amphiphilic polyesters and the process temperature on the particle size distribution (PSD) and the stability of the particles against agglomeration are discussed. According to the results of spectroscopic and viscosimetric investigations the silver precursor is reduced to elemental silver nanoparticles by a single electron transfer process from the poly(ethylene glycol) chain to the silver ion.
目前的工作提出了一种一步法合成适用于制备银填充聚合物材料的两亲性银纳米粒子的方法。这种通过在由亲水性聚(乙二醇)嵌段和疏水性烷基链组成的两亲聚酯熔体中还原 Tollens 试剂作为银前体制备溶剂的无合成方法允许在没有任何副产物形成的情况下生产银纳米粒子。这使得它们特别有兴趣用于生产具有抗菌性能的医疗器械。本文讨论了两亲聚酯中疏水性嵌段的链长和工艺温度对粒径分布(PSD)以及颗粒对抗团聚稳定性的影响。根据光谱和粘度研究的结果,银前体通过从聚(乙二醇)链到银离子的单电子转移过程还原为元素银纳米粒子。