首页> 外文OA文献 >Cu\u3csub\u3e2\u3c/sub\u3eO(1 1 0) formation on Co\u3csub\u3e3\u3c/sub\u3eO\u3csub\u3e4\u3c/sub\u3e(1 1 0) induced by copper impurity segregation
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Cu\u3csub\u3e2\u3c/sub\u3eO(1 1 0) formation on Co\u3csub\u3e3\u3c/sub\u3eO\u3csub\u3e4\u3c/sub\u3e(1 1 0) induced by copper impurity segregation

机译:由铜杂质偏析引起的铜的形成[1 1 0]形成在铜杂质分离上的共同作用下形成的元素1O 0(1 1 0)

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摘要

The surface crystal structure of the Co3O4(1 1 0) spinel was characterized by low energy electron diffraction (LEED), X-ray photoelectron spectroscopy (XPS), and Auger electron spectroscopy (AES). Well-defined LEED diffraction patterns showed an unreconstructed Co3O4(1 1 0) surface in Type A termination, and XPS and Auger indicated the surface to be stoichiometric with octahedral and tetrahedral cation sites occupied by 3+ and 2+ cations, respectively. The experimental lattice parameters of 8.22 Å ± 0.2 Å and 5.50 Å ± 0.2 Å in the (0 0 1) and (1¯ 1 0) directions, respectively, are in agreement with a bulk-terminated unit cell. The impurities: K, Ca, Na, and Cu segregated to the surface after prolonged heating to 630 K. K, Ca and Na could easily be removed by routine cleaning procedures and did not affect the Co3O4(1 1 0) structure or stoichiometry detectably in the submonolayer levels at which they were observed. However, the copper impurity resulted in the formation of a Cu2O(1 1 0) overlayer, with the accompanying reduction of the spinel surface to a rocksalt metal monoxide-like surface. The copper oxide formed a distorted hexagonal overlayer incommensurate with that of the Co3O4(1 1 0) stoichiometric surface and with periodic spacings of 3.86 Å ± 0.2 Å in the (0 0 1) and 4.10 Å ± 0.2 Å in the (1¯ 1 0)directions in agreement with Cu2O(1 1 0) bulk termination. The Co3O4(1 1 0) substrate could not be fully re-oxidized until all detectable copper had been removed from the surface.
机译:Co3O4(1 1 0)尖晶石的表面晶体结构通过低能电子衍射(LEED),X射线光电子能谱(XPS)和俄歇电子能谱(AES)表征。明确定义的LEED衍射图样显示在A型端接处未重建的Co3O4(1 1 0)表面,XPS和Auger表示该表面是化学计量的,八面体和四面体阳离子位点分别被3+和2+阳离子占据。在(0 0 1)和(1¯1 0)方向分别为8.22ű0.2Å和5.50ű0.2Å的实验晶格参数与散装终止的晶胞一致。长时间加热至630 K后,杂质K,Ca,Na和Cu偏析在表面。K,Ca和Na易于通过常规清洁程序除去,并且不会影响Co3O4(1 1 0)的结构或化学计量在观察它们的亚单层水平。但是,铜杂质导致形成了Cu2O(1 1 0)覆盖层,伴随着尖晶石表面还原为类似岩盐金属一氧化碳的表面。氧化铜形成扭曲的六角形覆盖层,与Co3O4(1 1 0)化学计量表面不相称,在(0 0 1)中具有3.86ű0.2Å的周期性间距,而在(1 1中具有4.10ű0.2Å的周期性间距0)方向与Cu2O(1 1 0)批量终止一致。直到将所有可检测到的铜从表面去除之前,Co3O4(1 1 0)衬底才能被完全重新氧化。

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