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Effects of phonon confinement on the luminescence dynamics of Eu~(3+) in Gd_2O_3 nanotubes

机译:声子限制对Gd_2O_3纳米管中Eu〜(3+)发光动力学的影响

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摘要

The effects of phonon confinement on the excited state dynamics of Eu~(3+) in Gd_2O_3 nanotubes are investigated. Anomalous thermalization appears due to elimination of low-energy phonon modes in this highly efficient nanophosphor of many potential applications. It is observed that in the low-temperature excitation spectrum hot bands with fine structures originate from the lowest sublevel of ~7F_1 at 217 cm~(-1) above the ground state. The intensity of the hot bands hardly changes below 50 K, but it increases and exhibits normal Boltzmann thermalization above 50 K. The fluorescence lifetime of ~5D_0 (2.19 ms at 10 K) is found to be unusually longer than that of the bulk counterparts, indicating a small filling factor of 0.55 for the nanotubes. These luminescent properties are attributed to the morphology and to the lack of low-energy phonon modes in the nanotubes.
机译:研究了声子约束对Gd_2O_3纳米管中Eu〜(3+)激发态动力学的影响。由于消除了许多潜在应用中的这种高效纳米荧光粉中的低能声子模式,因此出现了异常的热化现象。可以看出,在低温激发光谱中,具有良好结构的热带起源于基态以上217 cm〜(-1)处的最低子层〜7F_1。在50 K以下,热带的强度几乎不变,但在50 K以上时,热带的强度会增加并表现出正常的玻尔兹曼热效应。发现〜5D_0的荧光寿命(在10 K时为2.19 ms)异常长于本体的荧光寿命,表示纳米管的填充率为0.55。这些发光性质归因于形态和纳米管中缺乏低能声子模式。

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