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Defect-driven synthesis of self-assembled single crystal titanium nanowires via electrochemistry

机译:通过电化学缺陷驱动合成自组装单晶钛纳米线

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摘要

One-dimensional single crystal nanostructures have garnered much attention, from their low-dimensional physics to their technological uses, due to their unique properties and potential applications, from sensors to interconnects. There is an increasing interest in metallic titanium nanowires, yet their single crystal form has not been actualized. Vaporliquidsolid (VLS) and template-assisted top-down methods are common means for nanowire synthesis; however, each has limitations with respect to nanowire composition and crystallinity. Here we show a simple electrochemical method to generate single crystal titanium nanowires on monocrystalline NiTi substrates. This work is a significant advance in addressing the challenge of growing single crystal titanium nanowires, which had been precluded by titaniums reactivity. Nanowires grew non-parallel to the surface and in a periodic arrangement along specific substrate directions; this behavior is attributed to a defect-driven mechanism. This synthesis technique ushers in new and rapid routes for single crystal metallic nanostructures, which have considerable implications for nanoscale electronics.
机译:一维单晶纳米结构由于其独特的性能和从传感器到互连的潜在应用,已从低维物理到其技术用途引起了广泛关注。人们对金属钛纳米线的兴趣与日俱增,但单晶形式尚未实现。气液固相(VLS)和模板辅助自上而下的方法是纳米线合成的常用方法。然而,每一种在纳米线组成和结晶度方面都有局限性。在这里,我们展示了一种在单晶NiTi基板上生成单晶钛纳米线的简单电化学方法。这项工作在解决生长单晶钛纳米线的挑战方面取得了重大进展,而单晶钛纳米线已被钛的反应性所阻止。纳米线不平行于表面生长,并沿着特定的基材方向呈周期性排列。这种行为归因于缺陷驱动机制。这种合成技术为单晶金属纳米结构开辟了新的快速途径,这对纳米级电子学具有重要意义。

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