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NO adsorption and reaction on single crystal rutile TiO2(110) surfaces studied using UHV-FTIRS

机译:超高压-FTIRS研究单晶金红石型TiO2(110)表面NO的吸附和反应

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The adsorption and reaction of NO on both the oxidized and reduced single crystal rutile TiO2(110) surfaces were studied in a UHV-FTIRS system at low temperature. The monodentate adsorption configuration of the cis-(NO)2 dimer at bridge oxygen vacancy (Vo) sites was detected for the first time on reduced TiO2(110) surfaces. With the aid of (NO)2 dimer adsorption anisotropy, the bidentate configuration of the cis-(NO)2 dimer on fivefold coordinated Ti_(5c)~(4+) cation sites was clearly confirmed. The (NO)2 dimer converts to N2O on Ti_(5c)~(4+) cation sites at higher NO dosage on both oxidized and reduced surfaces, rather than at Vo sites. The (NO)2 -> N2O conversion is independent of the presence of Vo on TiO2(110) surfaces. To explain the signs of absorption bands of the dimer monodentate configuration, the local optical constant at Vo sites was introduced.
机译:在UHV-FTIRS系统中,研究了氧化和还原的单晶金红石型TiO2(110)表面上NO的吸附和反应。首次在还原的TiO2(110)表面上检测到桥氧空位(Vo)处的顺式(NO)2二聚体的单齿吸附构型。借助(NO)2二聚体的吸附各向异性,清楚地确定了顺式(NO)2二聚体在五重配位Ti_(5c)〜(4+)阳离子位点上的二齿构型。 (NO)2二聚体在较高的NO剂量下在Ti_(5c)〜(4+)阳离子位点上在氧化和还原表面上都转化为N2O,而不是在Vo位点上。 (NO)2-> N2O的转化与TiO2(110)表面上Vo的存在无关。为了解释二聚体单齿构型的吸收带的迹象,引入了Vo位点的局部光学常数。

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