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Electron-Induced Oxygen Desorption from the TiO_2(011)-2×1 Surface Leads to Self-Organized Vacancies

机译:TiO_2(011)-2×1表面的电子诱导氧解吸导致自组织空位

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When low-energy electrons strike a titanium dioxide surface, they may cause the desorption of surface oxygen. Oxygen vacancies that result from irradiating a TiO_2(011)-2×1 surface with electrons with an energy of 300 electron volts were analyzed by scanning tunneling microscopy. The cross section for desorbing oxygen from the pristine surface was found to be 9 (±6) × 10~(-17) square centimeters, which means that the initial electronic excitation was converted into atomic motion with a probability near unity. Once an 0 vacancy had formed, the desorption cross sections for its nearest and next-nearest oxygen neighbors were reduced by factors of 100 and 10, respectively. This site-specific desorption probability resulted in one-dimensional arrays of oxygen vacancies.
机译:当低能电子撞击二氧化钛表面时,它们可能引起表面氧的解吸。通过扫描隧道显微镜分析了电子以300电子伏特的能量照射TiO_2(011)-2×1表面而产生的氧空位。从原始表面解吸氧气的横截面为9(±6)×10〜(-17)平方厘米,这意味着初始电子激发被转换为原子运动的概率接近于1。一旦形成了0的空位,其最近和下一个最近的氧邻域的解吸截面分别减小了100倍和10倍。这种特定于位点的解吸概率导致氧空位的一维阵列。

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