【2h】

TiO

机译:

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摘要

Highly ordered titanium oxide films grown on a Pt3Ti(111) alloy surface were utilized for the controlled immobilization and tip-induced electric field-triggered electronic manipulation of nanoscopic W3O9 clusters. Depending on the operating conditions, two different stable oxide phases, z’-TiOx and w’-TiOx, were produced. These phases show a strong effect on the adsorption characteristics and reactivity of W3O9 clusters, which are formed as a result of thermal evaporation of WO3 powder on the complex TiOx/Pt3Ti(111) surfaces under ultra-high vacuum conditions. The physisorbed tritungsten nano-oxides were found as isolated single units located on the metallic attraction points or as supramolecular self-assemblies with a W3O9-capped hexagonal scaffold of W3O9 units. By applying scanning tunneling microscopy to the W3O9–(W3O9)6 structures, individual units underwent a tip-induced reduction to W3O8. At elevated temperatures, agglomeration and growth of large WO3 islands, which thickness is strongly limited to a maximum of two unit cells, were observed. The findings boost progress toward template-directed nucleation, growth, networking, and charge state manipulation of functional molecular nanostructures on surfaces using operando techniques.
机译:在PT3TI(111)合金表面上生长的高度有序的氧化钛膜用于控制固定化和尖端诱导的纳米镜下的电场触发的电子操纵纳米镜W3O9簇。根据操作条件,产生两种不同稳定的氧化术Z'-TiOx和W'-TiOx。这些阶段显示出对W3O9簇的吸附特性和反应性的强烈影响,其在超高真空条件下的复合TiOx / Pt3Ti(111)表面上的WO3粉末的热蒸发的结果形成。在金属吸引点或作为W3O9单位的W3O9封端的六方支架上的金属吸引点或超分子自组装的分离单位,发现了物质吸附的氚纳米氧化物。通过将扫描隧穿显微镜应用于W3O9-(W3O9)6结构,各个单位经历了尖端诱导的缩小到W3O8。在升高的温度下,观察到大WO3岛的凝聚和生长,该厚度被强烈限制在最多两个单位细胞中。使用操作道常技术,调查结果提高了模板定向的成核,生长,网络和电荷状态操纵表面上的功能分子纳米结构的进展。

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