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Interaction of methanol with lanthanum oxide surfaces and LaOx/Cu(111) interfaces. Part I. Adsorption and thermal decomposition

机译:甲醇与氧化镧表面和LaOx / Cu(111)界面的相互作用。第一部分吸附和热分解

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The adsorption of methanol on ordered-epitaxial layers of lanthanum oxide, possessing a La2O3(001)-like structure and grown on a Cu(111) substrate, has been studied using X-ray photoelectron spectroscopy (XPS), ultraviolet photoelectron spectroscopy (UPS), molecular beam scattering (MBS), temperature-programmed desorption (TPD) and Fourier-transform reflection/absorption infrared spectroscopy (FT-RAIRS). Methanol adsorbs dissociatively at 300 K, with a high sticking probability, to yield surface methoxy species. The methoxy species on the (001)-type terraces of the oxide films are stable to temperatures in excess of 500 K, but then decompose to yield almost exclusively H-2 and CO, with only trace quantities of methanol and formaldehyde being simultaneously desorbed. IR spectra also indicate the formation of some formate species on well-oxidised surfaces, and at high coverages the adsorbed methoxy is seen to partially convert upon mild heating to a new species which has characteristics of methyl formate. When regions of the Cu(111) surface are exposed, a greater proportion of the methoxy is converted to formaldehyde. [References: 44]
机译:使用X射线光电子能谱(XPS),紫外光电子能谱(UPS)研究了甲醇在具有La2O3(001)结构并生长在Cu(111)衬底上的有序外延氧化镧层上的吸附),分子束散射(MBS),程序升温解吸(TPD)和傅里叶变换反射/吸收红外光谱(FT-RAIRS)。甲醇在300 K处以高粘附力解离吸附,生成表面甲氧基物质。氧化膜的(001)型台阶上的甲氧基物质在超过500 K的温度下稳定,但随后分解仅生成H-2和CO,仅同时解吸了痕量的甲醇和甲醛。红外光谱还表明在充分氧化的表面上形成了一些甲酸类物质,在高覆盖率下,吸附的甲氧基在温和加热下会部分转化为具有甲酸甲酯特征的新物质。当Cu(111)表面的区域暴露时,更大比例的甲氧基转化为甲醛。 [参考:44]

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