首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Energetics of Ag Adsorption on and Adhesion to Rutile TiO2(100) Studied by Microcalorimetry
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Energetics of Ag Adsorption on and Adhesion to Rutile TiO2(100) Studied by Microcalorimetry

机译:通过微量微量测定法研究的AG吸附和粘附的粘附性的能量学

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The adsorption and adhesion energies of vapor-deposited Ag on rutile TiO_(2)(100) films have been measured using single-crystal adsorption calorimetry and He~(+) low-energy ion scattering spectroscopy. Ag grows as three-dimensional nanoparticles at 300 and 100 K. The saturation particle density is 8 × 10~(16) particles/m~(2) at 300 K and 2.5 × 10~(17) particles/m~(2) at 100 K. The differential heat of adsorption starts low, increases with Ag coverage, and finally approaches the sublimation enthalpy of Ag at both 300 and 100 K. At 300 K, the differential heat of adsorption starts from 208 kJ/mol and rises rapidly to 265 kJ/mol by 1 ML. At 100 K, Ag grows nanoparticles with smaller particle size on the terraces, while at 300 K, the Ag nanoparticles have bigger particle size and grow on step edges with stronger binding strength to the nanoparticles. Thus, the heat of Ag adsorption at 100 K starts at 141 kJ/mol (near the monomer size limit on terrace sites) and remains lower than that at 300 K until 1.5 ML. The adhesion energy of Ag(solid) to rutile TiO_(2)(100) is found to be large (~2.44 J/m~(2)), supporting a trend of decreasing adhesion energy with the enthalpy of oxide reduction.
机译:用单晶吸附量热法和He~+低能离子散射光谱法测定了气相沉积Ag在金红石型tio2(100)薄膜上的吸附能和粘附能。Ag在300和100K下生长为三维纳米颗粒。在300K和100K下,饱和粒子密度分别为8×10~(16)个粒子/m2和2.5×10~(17)个粒子/m2。吸附差热开始较低,随着Ag覆盖率的增加而增加,最后在300K和100K下接近Ag的升华焓,不同的吸附热从208 kJ/mol开始,迅速上升到265 kJ/mol(1 ML)。在100 K时,银在台阶上生长出粒径较小的纳米颗粒,而在300 K时,银纳米颗粒粒径较大,生长在台阶边缘,与纳米颗粒的结合力更强。因此,在100 K下,银的吸附热从141 kJ/mol(平台位置上的单体尺寸极限附近)开始,并在1.5 ML之前保持低于300 K下的吸附热。发现银(固体)与金红石TiO_2(100)的粘附能很大(~2.44 J/m2),支持随着氧化物还原焓降低粘附能的趋势。

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