Bang Seokhwan, Lee Seungjun, Ko Youngbin, Park Joohyun, Shin Seokyoon, Seo Hyungtak, Jeon Hyeongtag
Division of Materials Science and Engineering, Hanyang University, Seongdong-gu, Seoul, 133-791, South Korea.
Nanoscale Res Lett. 2012 Jun 6;7(1):290. doi: 10.1186/1556-276X-7-290.
We demonstrate the morphological control method of ZnO nanostructures by atomic layer deposition (ALD) on an Al2O3/ZnO seed layer surface and the application of a hierarchical ZnO nanostructure for a photodetector. Two layers of ZnO and Al2O3 prepared using ALD with different pH values in solution coexisted on the alloy film surface, leading to deactivation of the surface hydroxyl groups. This surface complex decreased the ZnO nucleation on the seed layer surface, and thereby effectively screened the inherent surface polarity of ZnO. As a result, a 2-D zinc hydroxyl compound nanosheet was produced. With increasing ALD cycles of ZnO in the seed layer, the nanostructure morphology changes from 2-D nanosheet to 1-D nanorod due to the recovery of the natural crystallinity and polarity of ZnO. The thin ALD ZnO seed layer conformally covers the complex nanosheet structure to produce a nanorod, then a 3-D, hierarchical ZnO nanostructure was synthesized using a combined hydrothermal and ALD method. During the deposition of the ALD ZnO seed layer, the zinc hydroxyl compound nanosheets underwent a self-annealing process at 150 °C, resulting in structural transformation to pure ZnO 3-D nanosheets without collapse of the intrinsic morphology. The investigation on band electronic properties of ZnO 2-D nanosheet and 3-D hierarchical structure revealed noticeable variations depending on the richness of Zn-OH in each morphology. The improved visible and ultraviolet photocurrent characteristics of a photodetector with the active region using 3-D hierarchical structure against those of 2-D nanosheet structure were achieved.
我们展示了通过在Al2O3/ZnO种子层表面进行原子层沉积(ALD)来控制ZnO纳米结构形态的方法,以及将分级ZnO纳米结构应用于光电探测器。使用ALD在溶液中以不同pH值制备的两层ZnO和Al2O3共存于合金膜表面,导致表面羟基失活。这种表面络合物减少了种子层表面上ZnO的成核,从而有效地屏蔽了ZnO固有的表面极性。结果,生成了二维锌羟基化合物纳米片。随着种子层中ZnO的ALD循环次数增加,由于ZnO自然结晶度和极性的恢复,纳米结构形态从二维纳米片变为一维纳米棒。薄的ALD ZnO种子层保形覆盖复合纳米片结构以生成纳米棒,然后使用水热法和ALD法相结合合成三维分级ZnO纳米结构。在ALD ZnO种子层沉积过程中,锌羟基化合物纳米片在150°C下经历了自退火过程,导致结构转变为纯ZnO三维纳米片,而固有形态未坍塌。对ZnO二维纳米片和三维分级结构的能带电子性质的研究表明,根据每种形态中Zn-OH的丰富程度,存在明显的变化。与二维纳米片结构相比,具有使用三维分级结构作为有源区的光电探测器的可见光和紫外光电流特性得到了改善。