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Neutron irradiation and post-irradiation annealing of rutile (TiO2-x): effect on hydrogen incorporation and optical absorption

机译:金红石(TiO2-x)的中子辐照和辐照后退火:对氢结合和光吸收的影响

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摘要

Neutron irradiation and post-irradiation annealing under oxidising and reducing conditions have been used to investigate H incorporation in, and the optical properties of, reduced (TiO2-x ) rutile. Optical absorption in rutile is mainly due to a Ti3+ Ti4+ intervalence charge transfer effect. The main mechanism for H incorporation in rutile involves interstitial H not coupled to other defects, which has important implications for the rate of H diffusion, and possibly also on the electrical properties of rutile. Additional minor OH absorption bands in IR spectra indicate that a small amount of interstitial H is coupled to defects such as Ti3+ on the main octahedral site, and indicates that more than one H incorporation mechanism may operate. Concentration of oxygen vacancies has a controlling influence on the H affinity of rutile.
机译:氧化和还原条件下的中子辐照和辐照后退火已被用于研究还原的(TiO2-x)金红石中的H掺入及其光学性质。金红石中的光吸收主要归因于Ti3 +,Ti4 +间隔电荷转移效应。 H在金红石中掺入的主要机理涉及不与其他缺陷耦合的间隙H,这对H扩散速率以及金红石的电学性质都具有重要意义。 IR光谱中的其他次要OH吸收带表明少量的间隙H与缺陷(例如八面体主要位点上的Ti3 +)耦合,并且表明可以使用一种以上的H掺入机制。氧空位的浓度对金红石的H亲和力具有控制性影响。

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