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CuO/ZnO Heterojunction Nanorod Arrays Prepared by Photochemical Method with Improved UV Detecting Performance

机译:光化学法制备CuO / ZnO异质结纳米棒阵列并提高紫外检测性能

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摘要

CuO/ZnO heterojunction nanorod arrays were synthesized using a facile photochemical deposition strategy. The morphology of CuO was related to the concentration of Cu2+ in the Cu(NO3)2 solution, UV illumination time, and the air annealing temperature. A possible reaction mechanism was proposed. In the photochemical deposition process, the OH was generated in the vicinity of the ZnO nanorod arrays and reacted with Cu2+ and NO3 in the solution to form Cu2(NO3)(OH)3/ZnO heterojunction nanorod arrays firstly, which were converted into CuO/ZnO heterojunction nanorod arrays completely after air annealing at a low temperature. The fabricated CuO/ZnO heterojunction nanorod arrays exhibits a well-defined rectifying characteristic and an improved photo-response performance compared with pure ZnO nanorod arrays.
机译:使用简便的光化学沉积策略合成了CuO / ZnO异质结纳米棒阵列。 CuO的形态与Cu(NO3)2溶液中Cu 2 + 的浓度,紫外线照射时间和空气退火温度有关。提出了一种可能的反应机理。在光化学沉积过程中,OH -在ZnO纳米棒阵列附近生成,并与Cu 2 + 和NO3 -发生反应。首先形成溶液,形成Cu2(NO3)(OH)3 / ZnO异质结纳米棒阵列,将其在低温空气退火后完全转化为CuO / ZnO异质结纳米棒阵列。与纯ZnO纳米棒阵列相比,所制备的CuO / ZnO异质结纳米棒阵列表现出良好的整流特性和改善的光响应性能。

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