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Excitation And Emission Processes Of Tb~(3+) In Porous Anodic Alumina

机译:多孔阳极氧化铝中Tb〜(3+)的激发与发射过程

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The strong photoluminescence (PL) of porous anodic alumina (PAA) with terbium deposition is reported. PAA, which has a regular pore morphology, is considered an effective template for fabricating luminescent composites. Tb was deposited onto PAA films by immersion in alcoholic solution with terbium chloride followed by heat treatment. The PL spectra demonstrate typical bands of Tb~(3+) corresponding to ~5D_4 → ~7F_j (j = 3, 4, 5, 6,) electron transition, with the maximum at 18,360 cm~(-1) (~5D_4 → ~7F_5). The PL mechanism of Tb~(3+) was systematically studied with annealing temperature. The non-radiative relaxation channel is provided by OH hydroxyls at the surface of porous anodic alumina and, after annealing at 900 ℃, the PL yield is highly improved. The PL intensity of Tb~(3+) increases with laser power and a saturation phenomenon, associated with the ratio of Tb~(3+) to Tb~(4+) ions, is observed at approximately 90 W/cm~2. Based on a theoretical model, the optical cross-section σ of terbium in PAA is estimated, with a value close to that of other porous materials doped with the rare-earth elements.
机译:据报道具有porous沉积的多孔阳极氧化铝(PAA)的强光致发光(PL)。具有规则孔隙形态的PAA被认为是制造发光复合材料的有效模板。通过将氯化钛浸入乙醇溶液中,然后进行热处理,将Tb沉积到PAA膜上。 PL谱图显示了对应于〜5D_4→〜7F_j(j = 3、4、5、6)电子跃迁的Tb〜(3+)的典型谱带,最大值在18360 cm〜(-1)(〜5D_4→ 〜7F_5)。研究了退火温度下Tb〜(3+)的PL机理。非辐射弛豫通道是由多孔阳极氧化铝表面的OH羟基提供的,在900℃退火后,PL的收率大大提高。 Tb〜(3+)的PL强度随激光功率的增加而增加,并且在大约90 W / cm〜2时观察到饱和现象,该现象与Tb〜(3+)与Tb〜(4+)离子的比例有关。根据理论模型,可以估算出PAA中of的光学截面σ,其值接近于掺杂有稀土元素的其他多孔材料的截面。

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