Departments of Biomedical Engineering and of Chemistry, Washington University, St. Louis, Missouri 63130, USA.
ACS Appl Mater Interfaces. 2009 Sep;1(9):2044-8. doi: 10.1021/am900400a.
Au nanocages synthesized from Ag nanocubes via the galvanic replacement reaction are finding widespread use in a range of applications because of their tunable optical properties. Most of these applications require the use of nanocages with a uniform size and in large quantities. This requirement translates into a demand for scaling up the production of Ag nanocubes with uniform, well-controlled sizes. Here we report such a method based on the modification of NaHS-mediated polyol synthesis with argon protection for fast reduction, which allows for the production of Ag nanocubes on a scale of 0.1 g per batch. The Ag nanocubes had an edge length tunable from 25 to 45 nm together with a size variation within +/-5 nm. The use of argon protection was the key to the success of this scale-up synthesis, suggesting the importance of controlling oxidative etching during synthesis.
通过电置换反应从银纳米立方体合成的金纳米笼,由于其可调谐的光学性质,在一系列应用中得到了广泛的应用。这些应用大多需要使用尺寸均匀、数量大的纳米笼。这一要求转化为对具有均匀、良好控制尺寸的银纳米立方体进行放大生产的需求。在这里,我们报告了一种基于氩气保护的 NaHS 介导的多元醇合成修饰的方法,用于快速还原,从而可以在每批 0.1 克的规模上生产银纳米立方体。银纳米立方体的边长可调,从 25nm 到 45nm,尺寸变化在正负 5nm 以内。氩气保护的使用是该放大合成成功的关键,这表明在合成过程中控制氧化刻蚀的重要性。