Department of Chemistry and Advanced Materials Research Institute, University of New Orleans , New Orleans, Louisiana 70148, United States.
Institute for Micromanufacturing, Louisiana Tech University , Ruston, Louisiana 71272, United States.
Langmuir. 2017 Nov 14;33(45):13051-13059. doi: 10.1021/acs.langmuir.7b02402. Epub 2017 Nov 1.
A rapid (≤2 min) and high-yield low-temperature synthesis has been developed for the in situ growth of gold nanoparticles (NPs) with controlled sizes in the interior of halloysite nanotubes (HNTs). A combination of HAuCl in ethanol/toluene, oleic acid, and oleylamine surfactants and ascorbic acid reducing agent with mild heating (55 °C) readily lead to the growth of targeted nanostructures. The sizes of Au NPs are tuned mainly by adjusting nucleation and growth rates. Further modification of the process, through an increase in ascorbic acid, allows for the formation of nanorods (NRs)/nanowires within the HNTs. This approach is not limited to gold-a modified version of this synthetic strategy can also be applied to the formation of Ag NPs and NRs within the clay nanotubes. The ability to readily grow such core-shell nanosystems is important to their further development as nanoreactors and active catalysts. NPs within the tube interior can further be manipulated by the electron beam. Growth of Au and Ag could be achieved under a converged electron beam suggesting that both Au@HNT and Ag@HNT systems can be used for the fundamental studies of NP growth/attachment.
一种快速(≤2 分钟)、高产、低温合成方法已经被开发出来,用于在海泡石纳米管(HNTs)内部原位生长具有可控尺寸的金纳米颗粒(NPs)。将 HAuCl 在乙醇/甲苯中的混合物、油酸、油胺表面活性剂和抗坏血酸还原剂与温和加热(55°C)相结合,很容易导致目标纳米结构的生长。Au NPs 的尺寸主要通过调节成核和生长速率来进行调整。通过增加抗坏血酸,进一步改进该工艺,可以在 HNTs 内部形成纳米棒(NR)/纳米线。这种方法不仅限于金——通过对该合成策略的修改,也可以应用于在粘土纳米管内形成 Ag NPs 和 NRs。这种容易生长核壳纳米体系的能力对于它们作为纳米反应器和活性催化剂的进一步发展非常重要。管内的 NPs 可以通过电子束进一步进行操作。在会聚电子束下可以实现 Au 和 Ag 的生长,这表明 Au@HNT 和 Ag@HNT 体系都可以用于研究 NP 的生长/附着的基本原理。