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Thermal and photochemical reactivity of oxygen atoms on gold nanocluster surfaces

机译:金纳米簇表面上氧原子的热和光化学反应性

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Reduction of oxidized gold nanoclusters by exposures to foreign gases and irradiation of UV photons has been investigated using X-ray photoelectron spectroscopy. Gold nanoclusters with narrow size distributions protected by alkanethiolate ligands were deposited on a TiO_2(110) surface with dip coating. Oxygen plasma etching was used for removal of alkanethiolate ligands and oxidization of gold clusters. The oxidized gold clusters were exposed to CO, C_2H_2, C_2H_4, H_2, and hydrogen atoms. Although, C_2H_4 and H_2 did not show any indications of reduction of oxidized gold clusters, CO, C_2H_2, and hydrogen atoms reduced the oxides on gold cluster surfaces. Among them, hydrogen atoms were most effective for reduction. Irradiation of UV photons around 400 nm could also reduce the oxidized gold clusters. The photochemical reduction mechanism was proposed as follows. The photo-reduction was initiated by electronic excitation of gold clusters and oxygen atoms activated reacted with carbon atoms at the surfaces of gold clusters. Carbon species were likely absorbed in gold clusters or remained at the boundaries between gold clusters when gold clusters agglomerated during oxygen plasma exposures. As the photochemical reduction progressed, carbon atoms segregated to the surfaces of gold clusters.
机译:已经通过使用X射线光电子能谱研究了通过暴露于外来气体和照射紫外线光子来还原氧化的金纳米团簇。具有链烷硫醇盐配体保护的具有窄尺寸分布的金纳米团簇通过浸涂沉积在TiO_2(110)表面上。氧等离子体蚀刻用于去除链烷硫醇盐配体和氧化金团簇。氧化的金簇暴露于CO,C_2H_2,C_2H_4,H_2和氢原子。尽管C_2H_4和H_2没有显示出氧化的金簇还原的任何迹象,但CO,C_2H_2和氢原子还原了金簇表面的氧化物。其中,氢原子最有效地还原。照射400 nm附近的紫外线光子也可以减少氧化的金簇。光化学还原机理提出如下。通过金团簇的电子激发来引发光还原,并且在金团簇的表面活化的氧原子与碳原子反应。在氧等离子体暴露期间金团聚时,碳物质很可能吸收在金团簇中或保留在金团簇之间的边界处。随着光化学还原的进行,碳原子偏析到金簇的表面。

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