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Kelvin Probe Force Microscopy Study of a Pt/TiO2 Catalyst Model Placed in an Atmospheric Pressure of N2 Environment

机译:大气压氮气环境下Pt / TiO2催化剂模型的开尔文探针力显微镜研究

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摘要

A catalyst model comprising platinum nanoparticles deposited on a TiO2(110) wafer was prepared in a vacuum, transferred in air, and characterized with a Kelvin probe force microscope placed in a N2 environment. The topography and local work function of individual nanoparticles were observed with single-nanometer resolution in the N2 environment of one atmosphere pressure. Some nanoparticle presented positive shifts of work function relative to that of the TiO2 surface, while the others showed negative shifts. This finding suggests heterogeneous properties of the nanoparticles exposed to air and then N2. The ability of the advanced microscope was demonstrated in observing the work function of metal nanoparticles on a metal oxide support even in the presence of vapor environments.
机译:在真空中制备包括沉积在TiO2(110)晶片上的铂纳米粒子的催化剂模型,将其转移到空气中,并通过置于N2环境中的Kelvin探针力显微镜进行表征。在一个大气压的氮气环境下,以单纳米分辨率观察单个纳米颗粒的形貌和局部功函数。相对于TiO2表面,一些纳米粒子呈现出功函数的正位移,而其他纳米粒子则呈现出负位移。该发现表明暴露于空气然后暴露于N 2的纳米颗粒的异质性。甚至在有蒸气环境的情况下,在观察金属氧化物载体上的金属纳米颗粒的功函数时,也证明了先进显微镜的能力。

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