Materials Science and Engineering, Texas A&M University, TX, United States.
Department of Biomedical Engineering, Texas A&M University, TX, United States.
Anal Chim Acta. 2014 Feb 17;812:206-14. doi: 10.1016/j.aca.2014.01.012. Epub 2014 Jan 13.
We present a novel method for colloidal synthesis of one-dimensional ZnO nanopods by heterogeneous nucleation on zero-dimensional ZnO nanoparticle 'seeds'. Ultra-small ZnO nanopods, multi-legged structures with sub-20 nm individual leg diameters, can be synthesized by hydrolysis of a Zn2+ precursor growth solution in presence of ∼4 nm ZnO seeds under hydrothermal conditions via microwave-assisted heating in as little as 20 min of reaction time. One-dimensional ZnO nanorods are initially generated in the reaction mixture by heterogeneous nucleation and growth along the [0001] direction of the ZnO crystal. Growth of one-dimensional nanorods subsequently yields to an 'attachment' and size-focusing phase where individual nanorods fuse together to form multi-legged nanopods having diameters ∼15 nm. ZnO nanopods exhibit broad orange-red defect-related photoluminescence in addition to a near-band edge emission at 373 nm when excited above the band-gap at 350 nm. The defect-related photoluminescence of the ZnO nanopods has been applied towards reversible optical humidity sensing at room temperature. The sensors demonstrated a linear response between 22% and 70% relative humidity with a 0.4% increase in optical intensity per % change in relative humidity. Due to their ultra-small dimensions, ZnO nanopods exhibit a large dynamic range and enhanced sensitivity to changes in ambient humidity, thus showcasing their ability as a platform for optical environmental sensing.
我们提出了一种通过在零维 ZnO 纳米颗粒“种子”上异质成核来合成一维 ZnO 纳米棒的新方法。通过微波辅助加热,在水热条件下,在 Zn2+ 前体生长溶液中水解,在 4nm ZnO 种子存在的情况下,仅在 20 分钟的反应时间内,就可以合成具有亚 20nm 单个腿径的超小 ZnO 纳米棒,多足结构。在反应混合物中,通过异质成核和沿 ZnO 晶体[0001]方向的一维生长,最初生成一维 ZnO 纳米棒。随后,一维纳米棒的生长导致“附着”和尺寸聚焦相,其中单个纳米棒融合在一起,形成具有约 15nm 直径的多足纳米棒。当在 350nm 的能带隙以上激发时,除了在 373nm 处的近带边发射外,ZnO 纳米棒还表现出宽的橙红色缺陷相关光致发光。ZnO 纳米棒的缺陷相关光致发光已应用于室温下的可逆光学湿度传感。传感器在 22%至 70%相对湿度范围内表现出线性响应,相对湿度每变化 0.4%,光强度增加 0.4%。由于其超小尺寸,ZnO 纳米棒表现出大的动态范围和对环境湿度变化的增强灵敏度,从而展示了它们作为光学环境传感平台的能力。