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Bio-inspired fabrication of ZnO nanorod arrays and their optical and photoresponse properties

机译:ZnO纳米棒阵列的生物启发制造及其光学和光响应特性

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Well-aligned ZnO nanorod arrays had been synthesized on the COOH-terminated short-chain silane surfaces for the first time by a polymer/substrate cooperative interaction method. The growth of the products on the self-assembled monolayers (SAMs) was well controlled by the electrostatic interaction and the polymer assistant hydrogen bonding interaction. By adjusting the polymer molecule assistant effect, ZnO arrays with satisfying optical quality and photoresponse property were obtained. These products showed a promising application in the ultraviolet emitting and the photoelectronic devices. This bio-inspired SAMs/polymer cooperative strategy on the short-chain silane shows prominent advantages such as its low-cost, easy preparation, good adherence and suitability for preparing series of one-dimensional (1-D) semiconductor nanostructure arrays, etc.
机译:通过聚合物/底物协同作用方法,首次在端基为COOH的短链硅烷表面上合成了排列良好的ZnO纳米棒阵列。通过静电相互作用和聚合物辅助氢键相互作用,可以很好地控制产物在自组装单分子膜(SAMs)上的生长。通过调节聚合物分子的辅助效应,获得了具有满意的光学质量和光响应性能的ZnO阵列。这些产品在紫外线发射和光电器件中显示出有希望的应用。这种在短链硅烷上受到生物启发的SAMs /聚合物合作策略显示出显着的优势,例如其低成本,易于制备,良好的粘附性和适用于制备一系列一维(1-D)半导体纳米结构阵列等。

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