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Growth of flower-like ZnO on ZnO nanorod arrays created on zinc substrate through low-temperature hydrothermal synthesis

机译:通过低温水热合成在锌基底上形成的ZnO纳米棒阵列上生长花状ZnO

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Flower-like ZnO with various morphologies on ZnO nanorod arrays have been hydrothermally fabricated using zinc substrates at low temperature (70℃). The time-dependent experiments indicated that both dense ZnO nanorod arrays and flower-like ZnO were created when the reaction time is 30 min. A growth mechanism was proposed to account for the growth of the flower-like ZnO on ZnO nanorod arrays. In situ growth caused the generation of dense ZnO nanorod arrays that were almost perpendicular to the surface of a zinc substrate. Due to the different rate of nucleation and crystal growth the morphology of flower-like ZnO on the top of ZnO nanorod arrays varied with the concentration of OH~-. The ionic radius of alkali metal hydroxide used to generate Zn(OH)_4~(2-) ions greatly affected the morphology of ZnO. Owing to the small quantity of ZnO nuclei and Zn(OH)_4~(2-) the flower-like ZnO on ZnO nanorod arrays became fewer when lowering the concentration of Zn~(2+) and OH~- while keeping the ratio between them.
机译:ZnO纳米棒阵列上具有各种形貌的花状ZnO是在低温(70℃)下使用锌基底水热制备的。随时间变化的实验表明,当反应时间为30分钟时,会同时生成致密的ZnO纳米棒阵列和花朵状的ZnO。提出了一种生长机制来解释花状ZnO在ZnO纳米棒阵列上的生长。原位生长导致生成几乎垂直于锌基板表面的致密ZnO纳米棒阵列。由于成核速率和晶体生长速率的不同,ZnO纳米棒阵列顶部的花状ZnO的形貌随OH〜-的浓度而变化。用于生成Zn(OH)_4〜(2-)离子的碱金属氢氧化物的离子半径极大地影响了ZnO的形貌。由于少量的ZnO核和Zn(OH)_4〜(2-),当降低Zn〜(2+)和OH〜-的浓度并保持两者之间的比例时,ZnO纳米棒阵列上的花状ZnO减少。他们。

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