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Formation of titanium monoxide (001) single-crystalline thin film induced by ion bombardment of titanium dioxide (110)

机译:二氧化钛(110)的离子轰击诱导形成一氧化钛(001)单晶薄膜

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A plethora of technological applications justify why titanium dioxide is probably the most studied oxide, and an optimal exploitation of its properties quite frequently requires a controlled modification of the surface. Low-energy ion bombardment is one of the most extended techniques for this purpose and has been recently used in titanium oxides, among other applications, to favour resistive switching mechanisms or to form transparent conductive layers. Surfaces modified in this way are frequently described as reduced and defective, with a high density of oxygen vacancies. Here we show, at variance with this view, that high ion doses on rutile titanium dioxide (110) induce its transformation into a nanometric and single-crystalline titanium monoxide (001) thin film with rocksalt structure. The discovery of this ability may pave the way to new technical applications of ion bombardment not previously reported, which can be used to fabricate heterostructures and interfaces.
机译:大量的技术应用证明了二氧化钛可能是研究最多的氧化物的原因,而要充分利用其性能,则需要对表面进行可控的改性。低能量离子轰击是为此目的最广泛的技术之一,并且最近已在氧化钛中用于其他应用,以促进电阻切换机制或形成透明导电层。以这种方式改性的表面经常被描述为还原的和有缺陷的,具有高的氧空位密度。在这里,与这种观点不同,我们显示了金红石型二氧化钛(110)上的高离子剂量会诱导其转变成具有岩盐结构的纳米单晶一氧化钛(001)薄膜。这种能力的发现可能为以前未曾报道过的离子轰击的新技术应用铺平道路,该技术可用于制造异质结构和界面。

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