Wen Dan, Liu Wei, Haubold Danny, Zhu Chengzhou, Oschatz Martin, Holzschuh Matthias, Wolf André, Simon Frank, Kaskel Stefan, Eychmüller Alexander
Physical Chemistry, TU Dresden , Bergstrasse 66b, 01062 Dresden, Germany.
Inorganic Chemistry, TU Dresden , Bergstrasse 66, 01062 Dresden, Germany.
ACS Nano. 2016 Feb 23;10(2):2559-67. doi: 10.1021/acsnano.5b07505. Epub 2016 Jan 25.
Three-dimensional (3D) porous metal nanostructures have been a long sought-after class of materials due to their collective properties and widespread applications. In this study, we report on a facile and versatile strategy for the formation of Au hydrogel networks involving the dopamine-induced 3D assembly of Au nanoparticles. Following supercritical drying, the resulting Au aerogels exhibit high surface areas and porosity. They are all composed of porous nanowire networks reflecting in their diameters those of the original particles (5-6 nm) via electron microscopy. Furthermore, electrocatalytic tests were carried out in the oxidation of some small molecules with Au aerogels tailored by different functional groups. The beta-cyclodextrin-modified Au aerogel, with a host-guest effect, represents a unique class of porous metal materials of considerable interest and promising applications for electrocatalysis.
三维(3D)多孔金属纳米结构因其集体性质和广泛应用一直是一类长期以来备受追捧的材料。在本研究中,我们报告了一种简便且通用的策略,用于形成涉及多巴胺诱导金纳米颗粒三维组装的金水凝胶网络。经过超临界干燥后,所得的金气凝胶具有高表面积和孔隙率。通过电子显微镜观察,它们均由多孔纳米线网络组成,其直径反映了原始颗粒(5 - 6纳米)的直径。此外,使用由不同官能团定制的金气凝胶对一些小分子进行了氧化的电催化测试。具有主客体效应的β-环糊精修饰的金气凝胶代表了一类独特的多孔金属材料,具有相当大的研究价值和电催化应用前景。