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Self-Catalytic and Selective Growth of ZnO Nanoneedles by Micro-Contact Printing and CVD

机译:微接触印刷和CVD法自催化和选择性生长ZnO纳米酮

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摘要

A self-catalytic method to selectively grow ZnO nanoneedles is demonstrated by simply combining a conventional micro-contact printing (μ-CP) and two-step metal-organic chemical vapor deposition (MOCVD) techniques. Self-assembled monolayers (SAMs) of octadecyltrichlorosilane (OTS) were patterned on Si substrates by μ-CP. The patterned structures of the ZnO nanoneedles were realized on the SAMs-patterned Si substrates by two-step MOCVD at high temperature of 600℃ via the initial preparation of a thin ZnO seed layer with retaining the patterned morphology at low temperature of 170℃. This combined method of μ-CP and self-catalytic two-step MOCVD should be applicable to fabricate the patterned alignments of metal oxide nanostructures.
机译:通过简单地将常规的微接触印刷(μ-CP)和两步金属有机化学气相沉积(MOCVD)技术相结合,证明了选择性生长ZnO纳米针的自催化方法。十八烷基三氯硅烷(OTS)的自组装单层(SAMs)通过μ-CP在Si衬底上构图。 ZnO纳米针的图案结构是通过在600℃的高温下通过两步MOCVD在SAMs图案化的Si衬底上实现的,首先制备了薄的ZnO籽晶层,并在170℃的低温下保留了该图案的形态。 μ-CP和自催化两步MOCVD的组合方法应适用于制造金属氧化物纳米结构的图案化排列。

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