M/ZnO体系300 K下H2传感的红外研究

F. Boccuzzi, A. Chiorino, G. Ghiotti, Guglielminotti
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引用次数: 14

摘要

讨论了Pt/ZnO在真空、H2和O2中的红外光谱,并与纯ZnO、Cu/ZnO和Ru/ZnO进行了比较。电子从氧化锌供体中心转移是证据。H2中强吸收带的增长是由于氧化锌供体水平的重新填充,这是由于氢原子从金属颗粒溢出到氧化锌上,在那里它们以质子形式被吸附。在H2和O2气氛下产生和消耗这种吸收的速率表明,室温传感中的速率决定步骤是金属催化剂上分子的解离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Infrared study of H2 sensing at 300 K using M/ZnO systems

Infrared spectra of Pt/ZnO in vacuum, in H2 and O2 are discussed in comparison with those of pure ZnO, Cu/ZnO and Ru/ZnO. An electron transfer from the ZnO donor centres is put in evidence. The growth of a strong absorption band in H2 is due to the repopulation of the ZnO donor levels as a consequence of the spill-over of H atoms from the metal particles to ZnO, where they are adsorbed in protonic form. The rate of production and depletion of this absorption in H2 and O2 atmospheres indicates that the rate-determining steps in the room-temperature sensing are the dissociations of the molecules on the metal catalysts.

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