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水熱法制備氧化鋅納米棒陣列的生長動力學研究

Kinetic study on the growth of ZnO nanorod array films prepared by hydrothermal method

  • 摘要: 采用低溫水熱方法,在經預先修飾的基底上制備出取向高度一致的ZnO納米棒陣列.用SEM和XRD等手段對制備的納米棒陣列進行了表征.ZnO納米棒陣列水熱生長動力學表明:當生長時間在8h內時,納米棒的生長速度較快,之后納米棒的生長近乎停止,棒的長度和直徑基本不再改變.在生長速度較快的8h內時,納米棒的徑向生長由兩個明顯的動力學過程組成,即由生長時間在1.5h內的快速生長步驟和隨后的慢速生長步驟組成;納米棒的長度以約5.5nm·min-1的生長速度增加至2.4μm.

     

    Abstract: By using a low temperature hydrothermal approach, well-aligned ZnO nanorod arrays were pre-pared on substrates, which were pre-treated with colloid pre-treating method in different growth periods of time. Scanning electron microscopy and X-ray diffraction spectroscopy were employed to study the morphology of ZnO nanorod arrays. Kinetic studies show that the first 8 h is the most important growth period, beyond which the nanorods nearly stop growing. During the first 8 h, the growth of width of ZnO nanorods contains two distinct steps:a fast step within the first 1.5 h, in which the nanorods tend to be short and wide, followed by a slow step, in which long rods with high aspect ratio are obtained. The length of ZnO nanorod arrays, which essentially represents the thickness of a homogeneous monolayer of the thin film, may be experimentally tailored to any required dimension of up to 2.4 μm at a growth rate of approximately 5.5 nm·min-1.

     

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