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Magnetic Iron Oxide Nanowires Formed by Reactive Dewetting

机译:通过反应性脱水形成磁性氧化铁纳米线

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摘要

The growth and reactive dewetting of ultrathin films of iron oxides supported on Re(0001) surfaces have been imaged in situ in real time. Initial growth forms a nonmagnetic stable FeO (wüstite like) layer in a commensurate network upon which high aspect ratio nanowires of several microns in length but less than 40 nm in width can be fabricated. The nanowires are closely aligned with the substrate crystallography and imaging by X-ray magnetic circular dichroism shows that each contain a single magnetic domain. The driving force for dewetting appears to be the minimization of strain energy of the Fe_(3)O_(4) crystallites and follows the Tersoff and Tromp model in which strain is minimized at constant height by extending in one epitaxially matched direction. Such wires are promising in spintronic applications and we predict that the growth will also occur on other hexagonal substrates.
机译:Re(0001)表面上负载的氧化铁超薄膜的生长和反应性脱模已经实时成立。 初始生长在相称网络中形成非磁性稳定的FeO(Wüstite,如)层,其高纵横比纳米线的长度为几微米但宽度小于40nm。 纳米线与基材晶体学晶体学和通过X射线磁性圆形二色性成像表明,各自含有单个磁域。 用于脱模的驱动力似乎是Fe_(3)O_(4)晶体的应变能的最小化,并遵循纺织品和曲距模型,其中通过在一个外延匹配的方向上延伸而在恒定高度处最小化菌株。 这种电线在旋转反应应用中具有很有希望,并且预测其他六边形衬底上的生长也会发生。

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