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SURFACE INTERACTIONS IN PD-NB SYSTEM AND THEIR RELATION TO BASIC QUESTIONS AND PRACTICAL CATALYSIS

机译:PD-NB系统中的表面相互作用及其与基本问题和实用催化的关系

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Room temperature adsorption-desorption properties of Pd overlayers of various thicknesses were studied by thermal desorption spectroscopy of carbon monoxide. Pd overlayers were deposited on clean and oxidized Nb foil (NbOx/Nb). Adsorption properties of Pd overlayers deposited on clean Nb at temperature 350-400 K were not influenced by annealing in the temperature range 400 K to 600 K. Annealing above this temperature caused the decrease in the area of the Pd surface. It became probably smoother, exhibiting lower number of adsorption sites for CO. Non-annealed Pd overlayers de posited on the oxide carrier (NbOx/Nb) at temperatures between 350 and 400 K possessed the same adsorption capability as Pd deposited directly on Nb. Pd atoms thus neither massively penetrated into the oxide layer nor were encapsulated by NbOx. [References: 21]
机译:通过一氧化碳的热脱附光谱研究了各种厚度的Pd覆膜的室温吸附-脱附性能。将Pd覆盖层沉积在干净且氧化的Nb箔(NbOx / Nb)上。在温度范围为400 K至600 K的退火条件下,在温度为350-400 K的洁净Nb上沉积的Pd覆盖层的吸附性能不会受到影响。高于该温度的退火会导致Pd表面面积的减小。它可能变得更光滑,对CO的吸附位点更少。在350至400 K的温度下,沉积在氧化物载体上的未退火Pd覆盖层(NbOx / Nb)具有与直接沉积在Nb上的Pd相同的吸附能力。因此,Pd原子既不会大量渗透到氧化物层中,也不会被NbOx封装。 [参考:21]

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