Iancu Alexandru-Cristi, Nicolaev Adela, Apostol Nicoleta G, Abramiuc Laura E, Teodorescu Cristian M
National Institute of Materials Physics, Atomiștilor 405A, 077125, Măgurele, Ilfov, Romania.
University of Bucharest, Faculty of Physics, Atomiștilor 405, 077125, Măgurele, Ilfov, Romania.
Heliyon. 2024 Jul 23;10(15):e35072. doi: 10.1016/j.heliyon.2024.e35072. eCollection 2024 Aug 15.
Adsorption and desorption of ethylene on BaO-terminated (001) barium titanate are investigated by X-ray photoelectron spectroscopy. Carbon is found in an oxidized state, at a binding energy similar to that resulting from CO adsorption on BaTiO(001). The amount of carbon adsorbed on the surface is also similar to the case of CO/BaTiO(001). Upon heating the substrate up to the loss of its ferroelectric polarization, the C 1s signal from the oxidized spectral region vanishes. At the same time, there was no noticeable oxygen depletion of the surface after repeated CH adsorption and desorption. The substrate remains stable after repeated oxidative adsorption and desorption of ethylene. Desorption occurs at different temperatures, depending on the adsorption temperature, which suggests different adsorption geometries: non-dissociated adsorption at high temperature with ethylene bond on two surface oxygen atoms, and locally dissociated adsorption at lower temperatures, in "formaldehyde-like" local configurations.
采用X射线光电子能谱研究了乙烯在BaO端接的(001)钛酸钡上的吸附和解吸。发现碳处于氧化态,其结合能与CO吸附在BaTiO(001)上的结合能相似。表面吸附的碳量也与CO/BaTiO(001)的情况相似。将衬底加热至铁电极化消失时,来自氧化光谱区域的C 1s信号消失。同时,在反复进行CH吸附和解吸后,表面没有明显的氧消耗。在反复进行乙烯的氧化吸附和解吸后,衬底保持稳定。解吸发生在不同温度下,这取决于吸附温度,这表明存在不同的吸附几何构型:高温下乙烯键与两个表面氧原子相连的非解离吸附,以及低温下“类甲醛”局部构型的局部分解吸附。