School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.
ACS Nano. 2010 Oct 26;4(10):6196-202. doi: 10.1021/nn101803m.
We report the shape-controlled synthesis of anisotropic Au nanostructures through TiO(2)-assisted photochemical reduction of HAuCl(4). By using this method, we have successfully synthesized the platelet-like Au nanorods and six-star Au nanoparticles. Importantly, the platelet Au nanorod exhibits the unique asymmetric five-twinned structure. The colloidal TiO(2) sols were used as both the photocatalyst to initiate the reaction and the stabilizing agent for the produced Au nanostructures. Significantly, in this photochemical process, the tunable irradiation intensity allows us to kinetically control the crystal evolution at various growth stages, leading to the shape difference of ultimate gold nanostructures. Our synthetic method shows a great potential as an alternative or supplement to the other wet chemical approaches for the shape-control of metallic nanostructures.
我们通过 TiO(2)辅助的 HAuCl(4)光化学还原反应,实现了各向异性的 Au 纳米结构的可控合成。利用该方法,我们成功地合成了类血小板 Au 纳米棒和六星 Au 纳米粒子。重要的是,类血小板 Au 纳米棒具有独特的非对称五孪晶结构。胶体 TiO(2)溶胶既可用作引发反应的光催化剂,也可用作所生成 Au 纳米结构的稳定剂。重要的是,在这个光化学过程中,可调的辐照强度允许我们在不同的生长阶段动力学地控制晶体的演化,从而导致最终金纳米结构的形状差异。我们的合成方法为金属纳米结构的形状控制提供了一种替代或补充的方法,具有很大的潜力。