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Density control of ZnO nanorod arrays on mixed self-assembled monolayers

机译:混合自组装单层ZnO纳米棒阵列的密度控制

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摘要

We demonstrate the feasibility of controlling the density of ZnO nanorod arrays by using mixed self-assembled monolayers (SAMs) composed of molecules with hydrophobic methyl end groups and hydrophilic amine end groups. As the concentration of amine groups in the mixed SAMs increased, the density of ZnO nanorods grown by a solution-based method increased from 0 to 6 × 10 ~(10) cm~(-2). For the given range of the amine concentration, surface energy increased from 31 mN m~(-1) to 64 mN m~(-1). While its dispersive component showed weak correlation with the amine concentration, its polar component increased from less than 1 mN m~(-1) to 20 mN m~(-1), indicating that the reactive amine molecules induced the change of the nanorod density in our experimental system. These results suggest that the use of mixed SAMs can be applied to various material systems with a new perspective for controlling the density of nanorod arrays.
机译:我们证明了通过使用由具有疏水性甲基端基和亲水性胺端基的分子组成的混合自组装单分子层(SAMs)来控制ZnO纳米棒阵列密度的可行性。随着混合SAM中胺基浓度的增加,溶液法生长的ZnO纳米棒的密度从0增加到6×10〜(10)cm〜(-2)。对于给定的胺浓度范围,表面能从31 mN m〜(-1)增加到64 mN m〜(-1)。尽管其分散成分与胺浓度之间的相关性较弱,但其极性成分却从不足1 mN m〜(-1)增加到20 mN m〜(-1),表明反应性胺分子引起了纳米棒密度的变化。在我们的实验系统中这些结果表明,混合SAM的使用可以应用于控制纳米棒阵列密度的新视角的各种材料系统。

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