Ng Choon Hwee Bernard, Fan Wai Yip
Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543.
J Phys Chem B. 2006 Oct 26;110(42):20801-7. doi: 10.1021/jp061835k.
We report the shape evolution process of Cu(2)O nanocrystals upon slow oxidation of Cu under ambient conditions, yielding novel hexagonal and triangular platelike morphologies. The shape of the obtained nanocrystals evolves from hexagonal to triangular to octahedral; the growth patterns are governed by kinetically and thermodynamically controlled growth. Preferential adsorption of I(-) on {111} planes of Cu(2)O nanoparticles induced the selective crystal growth of metastable platelike structures with {111} faces as the basal planes. On aging, the growth process appeared to shift into the thermodynamic regime and the thermodynamically stable octahedral shape is obtained. The possible growth mechanisms were investigated by varying the synthetic conditions. The band gap of Cu(2)O nanooctahedrons was determined by the classical Tauc approach to be 2.24 eV, which is blue shifted with respect to the bulk Cu(2)O value (2.17 eV). Results suggest that the slow oxidation process and use of crystallographic selective surfactants are essential for the appearance of anisotropic metastable shapes. In general, surface energy control by surfactant molecules might provide a convenient channel for tailoring nanocrystal shapes of metal oxides.
我们报道了在环境条件下铜缓慢氧化时Cu₂O纳米晶体的形状演变过程,得到了新颖的六边形和三角形板状形态。所获得的纳米晶体形状从六边形演变为三角形再到八面体;生长模式受动力学和热力学控制生长的支配。I⁻在Cu₂O纳米颗粒的{111}面上的优先吸附诱导了以{111}面为基面的亚稳态板状结构的选择性晶体生长。老化时,生长过程似乎转变为热力学状态,从而获得热力学稳定的八面体形状。通过改变合成条件研究了可能的生长机制。采用经典的Tauc方法测定Cu₂O纳米八面体的带隙为2.24 eV,相对于块状Cu₂O值(2.17 eV)发生了蓝移。结果表明,缓慢氧化过程和晶体学选择性表面活性剂的使用对于各向异性亚稳态形状的出现至关重要。一般来说,表面活性剂分子对表面能的控制可能为定制金属氧化物纳米晶体形状提供一条便捷途径。