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Effect of heat treatment on the structure of incorporated oxalate species and photoluminescent properties of porous alumina films formed in oxalic acid

机译:热处理对草酸结合物种结构和草酸多孔氧化铝膜光致发光性能的影响

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The present work focuses on the use of IR spectroscopy and photoluminescence spectral measurements for studying the treatment temperature effect on the compositional and luminescent properties of oxalic acid alumina films. In line with the recent researches we have also found that heat treatment of porous alumina films formed in oxalic acid leads to considerable changes in their photoluminescence properties: upon annealing the intensity of photoluminescence (PL) increases reaching a maximum at the temperature of around 500 ℃ and then decreases. IR spectra of as-grown and heat-treated films have proved that PL emission in the anodic alumina films is related with the state of 'structural' oxalate species incorporated in the oxide lattice. These results allowed us to conclude that PL behavior of oxalic acid alumina films can be explained through the concept of variations in the bonding molecular orbitals of incorporated oxalate species including σ- and π-bonds.
机译:本工作着重于使用红外光谱和光致发光光谱测量来研究处理温度对草酸氧化铝膜的组成和发光性能的影响。根据最近的研究,我们还发现,对草酸中形成的多孔氧化铝薄膜进行热处理会导致其光致发光性能发生重大变化:退火后,在500℃左右的温度下,光致发光(PL)的强度增加,达到最大值。然后减少。生长和热处理的薄膜的红外光谱已经证明,阳极氧化铝薄膜中的PL发射与并入氧化物晶格中的“结构”草酸盐物种的状态有关。这些结果使我们得出结论,草酸氧化铝薄膜的PL行为可以通过引入的草酸盐物种(包括σ和π键)的键合分子轨道变化的概念来解释。

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