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Titanium monoxide ultra-thin coatings evaporated onto polycrystalline copper films

机译:一氧化钛超薄涂层蒸发到多晶铜膜上

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We evaporated polycrystalline copper thin films of thickness between 10 and 100 nm on silicon substrates with their native oxide under ultra-high-vacuum conditions. Some of them were exposed to air for a period ranging from 1 day to 2 weeks. X-ray photoelectron spectroscopy (XPS) revealed a clean copper surface with a trace of oxygen. These films that were exposed to air presented oxides in the state Cu(II), the amount of CuO depended on the time that the film was exposed to air. Subsequently, we deposited TiO ultra-thin films on polycrystalline copper substrates. Both these thin films were formed by electron beam evaporation. XPS spectra showed that the surface of the titanium monoxide (TiO) films was contamination-free. An evaporation of 0.3 nm of TiO reduced the native oxide of the copper substrates from Cu(II) to Cu(I) or Cu(O) and transformed the TiO into TiO2 at the interface. Low-energy ion spectroscopy showed that the complete coverage of the substrates depends on the thickness of the copper films. For 10nm copper thin films the complete coverage occurred at 1.5 nm of TiO, and for 100 nm it occurred at 2.0 nm of TiO. In samples exposed to air, the complete coverage occurred at a film thickness slightly higher than those treated under ultra-high-vacuum conditions. (C) 2004 Published by Elsevier Ltd.
机译:我们在超高真空条件下用其天然氧化物在硅衬底上蒸发了厚度在10至100 nm之间的多晶铜薄膜。其中一些人暴露于空气中的时间为1天至2周。 X射线光电子能谱(XPS)显示干净的铜表面带有微量的氧气。这些暴露在空气中的薄膜呈状态为Cu(II)的氧化物,CuO的量取决于薄膜暴露在空气中的时间。随后,我们在多晶铜基板上沉积了TiO超薄膜。这两个薄膜都是通过电子束蒸发形成的。 XPS光谱表明,一氧化钛(TiO)膜的表面无污染。蒸发0.3 nm的TiO会将铜基板的天然氧化物从Cu(II)还原为Cu(I)或Cu(O),并在界面处将TiO转化为TiO2。低能离子光谱表明,基底的完全覆盖取决于铜膜的厚度。对于10nm的铜薄膜,完全覆盖发生在TiO的1.5 nm处,而对于100nm的铜,发生在TiO的2.0 nm处。在暴露于空气中的样品中,完全覆盖的膜厚度略高于在超高真空条件下处理的膜厚度。 (C)2004由Elsevier Ltd.出版

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