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Template-directed synthesis, characterization and electrical properties of Au-TiO2-Au heterojunction nanowires

机译:模板指导的Au-TiO2-Au异质结纳米线的合成,表征和电性能

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The feasibility of synthesizing metal - oxide - metal (MOM) heterojunction nanowires in the Au-TiO2-Au system is demonstrated. The synthesis method presented here entails sequential electroplating of Au and electro-deposition of amorphous titanium oxide (TiOx) inside nanoholes of anodic aluminium oxide (AAO) templates. This is followed by dissolving the template, and heat-treating the released nanowires, which results in the crystallization of the amorphous TiOx segment into nanocrystalline TiO2. Detailed transmission electron microscopy (TEM) investigation has revealed that the nanocrystalline TiO2 is orthorhombic (columbite) phase primarily. This synthesis method has the potential to provide better control over the characteristics and architectures of the resulting MOM nanowires. The Au-TiO2-Au nanowires were incorporated into single-nanowire devices, fabricated using a direct-write method. Nonlinear current-voltage (I - V) responses were obtained for individual MOM nanowires. The heterojunctions in such MOM nanowires are likely to offer certain advantages over all-oxide nanowires, making the MOM nanowires potentially useful as one-dimensional building blocks in the multifunctional nanoelectronics of the future.
机译:证明了在Au-TiO2-Au体系中合成金属-氧化物-金属(MOM)异质结纳米线的可行性。本文介绍的合成方法需要在阳极氧化铝(AAO)模板的纳米孔内顺序电镀Au和无定形氧化钛(TiOx)的电沉积。接下来是溶解模板,并对释放的纳米线进行热处理,这导致非晶TiOx片段结晶为纳米TiO2。详细的透射电子显微镜(TEM)研究表明,纳米晶TiO2主要是斜方晶(co石)相。这种合成方法具有对所得MOM纳米线的特性和架构提供更好控制的潜力。将Au-TiO2-Au纳米线并入使用直接写入法制造的单纳米线器件中。获得了单个MOM纳米线的非线性电流-电压(IV)响应。这种MOM纳米线中的异质结可能会提供优于全氧化物纳米线的某些优势,这使得MOM纳米线有可能在未来的多功能纳米电子学中用作一维构件。

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