†College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.
Nano Lett. 2015 May 13;15(5):3403-9. doi: 10.1021/acs.nanolett.5b00758. Epub 2015 Apr 20.
Layered double hydroxides (LDHs) are a family of two-dimensional (2D) materials with layered crystal structures that have found many applications. Common strategies to synthesize LDHs lead to a wide variety of morphologies, from discrete 2D nanosheets to nanoflowers. Here, we report a study of carefully controlled LDH nanoplate syntheses using zinc aluminum (ZnAl) and cobalt aluminum (CoAl) LDHs as examples and reveal their crystal growth to be driven by screw dislocations. By controlling and maintaining a low precursor supersaturation using a continuous flow reactor, individual LDH nanoplates with well-defined morphologies were synthesized on alumina-coated substrates, instead of the nanoflowers that result from uncontrolled overgrowth. The dislocation-driven growth was further established for LDH nanoplates directly synthesized using the respective metal salt precursors. Atomic force microscopy revealed screw dislocation growth spirals, and under transmission electron microscopy, thin CoAl LDH nanoplates displayed complex contrast contours indicative of strong lattice strain caused by dislocations. These results suggest the dislocation-driven mechanism is generally responsible for the growth of 2D LDH nanostructures, and likely other materials with layered crystal structures, which could help the rational synthesis of well-defined 2D nanomaterials with improved properties.
层状双氢氧化物 (LDHs) 是一类具有层状晶体结构的二维 (2D) 材料,具有广泛的应用。常见的 LDHs 合成策略导致了其形态的多样性,从离散的 2D 纳米片到纳米花。在这里,我们报告了一项使用锌铝 (ZnAl) 和钴铝 (CoAl) LDHs 作为实例的精心控制的 LDH 纳米片合成研究,并揭示了它们的晶体生长是由螺旋位错驱动的。通过使用连续流反应器控制和保持低的前体过饱和度,可以在氧化铝涂覆的衬底上合成具有明确定义形态的单个 LDH 纳米片,而不是由失控的过度生长导致的纳米花。通过直接使用各自的金属盐前体制备 LDH 纳米片,进一步证实了位错驱动的生长。原子力显微镜揭示了螺旋位错生长螺旋,在透射电子显微镜下,薄的 CoAl LDH 纳米片显示出复杂的对比轮廓,表明由于位错引起的晶格应变很强。这些结果表明,位错驱动机制通常负责 2D LDH 纳米结构的生长,以及可能具有层状晶体结构的其他材料的生长,这有助于合理合成具有改善性能的明确 2D 纳米材料。