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Electrochemical growth of ZnO nanocolumn arrays and ZnOmesoporous films

机译:ZnO纳米阵列的电化学生长和Znomeopo膜

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Electrodeposition is a versatile method for the synthesis of ZnO thin films. Various nanostructures can be prepared in a controlled manner. The formation of ZnO nanowire arrays is observed in a deposition bath depleted in zinc salt precursor. Compared to dense ZnO films, the ZnO nanowire arrays present a high UV near band edge PL emission due to a better structural quality with lower structural defects. Recent works assign the formation of ZnO nanowires to the increase in the interfacial pH during the growth. At high pH, zinc ions are complexed by hydroxide ions and are negatively charged. This leads to the quenching of the lateral growth and the slowdown of the vertical growth rate. Mesoporous ZnO films can be prepared by electrodeposition by using a structure directing agent. Results obtained with eosin Y dye are interesting : after optimizing of the dye concentration, a maximum porosity of more than 62% and a maximum of specific surface area of 75 m~2.cm~(-3) is obtained. These films are promising for photocatalysis and solar cell applications.
机译:电沉积是一种用于合成ZnO薄膜的通用方法。可以以受控方式制备各种纳米结构。在锌盐前体耗尽的沉积浴中观察到ZnO纳米线阵列的形成。与致密的​​ZnO薄膜相比,由于具有较低结构缺陷的结构质量,ZnO纳米线阵列呈现高紫外线PL发射。最近的作品将ZnO纳米线的形成分配到生长期间界面pH的增加。在高pH下,锌离子被氢氧化离子络合并带负电。这导致横向生长的淬火和垂直生长速率的放缓。介孔ZnO膜可以通过使用结构引导剂通过电沉积来制备。用eosin Y染料获得的结果是有趣的:在优化染料浓度后,获得大于62%的最大孔隙率,最大的比表面积为75μm〜2cm〜(-3)。这些薄膜对光催化和太阳能电池应用有前途。

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