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具有增强光催化效率的单晶 Ag 孔微盘上的双面 ZnO 纳米棒阵列。

Double-sided ZnO nanorod arrays on single-crystal Ag holed microdisks with enhanced photocataltytic efficiency.

机构信息

Department of Chemistry, Tongji University, Siping Road 1239, Shanghai 200092, People's Republic of China.

出版信息

Nanoscale. 2013 May 21;5(10):4388-94. doi: 10.1039/c3nr34102j.

Abstract

Novel hierarchical heterostructures of double-sided ZnO nanorod (NR) arrays grown on single-crystal Ag holed microdisks (HMDs) have been prepared through a two-step aqueous strategy including ZnO seed loading and the subsequent heteroepitaxial growth of ZnO NRs on Ag HMDs. By simply adjusting the synthetic parameters, ZnO NRs with variable NR diameters (20-200 nm), lengths (100-1.8 μm) and unusual shapes (concave, tubular and sharp tips) on Ag HMDs have been realized, which endows the Ag/ZnO heterostructures with versatile morphologies. The novel Ag/ZnO heterostructures consisting of integrated 1D semiconductor/2D metal nanostructured blocks with high specific surface area (SSA) and opened spatial architectures may promise important applications related to photoelectric fields. As expected, in photocatalytic measurements, the typical Ag HMD/ZnO NR heterostructure exhibits superior catalytic activity over other catalysts of bare ZnO NRs, ZnO NR arrays or heterostructured Ag nanowires (NWs)/ZnO NRs. The synergistic effect of the unique Ag HMD/ZnO NR heterostructures contributing to the high catalytic performance has been discussed in detail.

摘要

新型双面 ZnO 纳米棒(NR)阵列的分层异质结构,生长在单晶 Ag 孔微盘(HMD)上,通过两步水策略制备,包括 ZnO 种子负载和 ZnO NR 在 Ag HMD 上的随后异质外延生长。通过简单地调整合成参数,实现了 Ag HMD 上具有可变 NR 直径(20-200nm)、长度(100-1.8μm)和不同形状(凹形、管状和尖端)的 ZnO NR,赋予了 Ag/ZnO 异质结构多种形态。新型 Ag/ZnO 异质结构由集成的 1D 半导体/2D 金属纳米结构块组成,具有高比表面积(SSA)和开放的空间结构,可能在光电领域具有重要的应用前景。不出所料,在光催化测量中,典型的 Ag HMD/ZnO NR 异质结构表现出优于其他催化剂的催化活性,如 bare ZnO NRs、ZnO NR 阵列或异质结构 Ag 纳米线(NWs)/ZnO NRs。详细讨论了独特的 Ag HMD/ZnO NR 异质结构的协同效应,这对高催化性能有贡献。

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