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Tb3+-Yb3+共掺杂CeF3纳米荧光粉的近红外量子剪裁

Near Infrared Quantum Cutting of Tb3+-Yb3+ Co-Doped CeF3 Nanophosphors.

作者信息

Sun Xiao, Hu Xiao-Yun, Hou Wen-Qian, Fan Jun, Miao Hui, Zhan Su-Chang

出版信息

J Nanosci Nanotechnol. 2016 Apr;16(4):3577-82. doi: 10.1166/jnn.2016.11880.

Abstract

In this paper, Tb3+-Yb3+ Co-doped CeF3 nanophosphors were synthesized using the microwave-assisted heating hydrothermal method (M-H). The excitation and emission spectra of the samples at room temperature show that the samples absorb ultraviolet light from 250 nm to 280 nm, and emit light at 300 nm. This corresponds to the transitions from 5D to 4F of Ce3+, 480 nm, 540 nm, 583 nm, 620 nm which correspond to the transitions from 5D4 to 7F6,5,4,3 of Tb3+, 973 nm which corresponds to the transitions from 2F5/2-2F7/2 of Yb3+. In the emission spectra, it is clear that the emission intensity of Ce3+ and Tb3+ decreases, and Yb3+ increases with increasing Yb3+. This suggests that energy transfer from Ce3+ to Yb3+, and Ce3+ to Tb3+ to Yb3+ may occur. In the near infrared emission area, it is noted that a distinct emission centered at 973 nm was observed under 260 nm excitation. This is due to transitions among the different Stark levels of 2FJ(J=5/2,7/2) Yb3+ ions. This also suggests an energy transfer from Ce3+ ions to Tb3+ and then to Yb3+. The energy transfers from Tb3+-Yb3+ Co-doped CeF3 nanophosphors, which lead to intense NIR emissions at 900-1050 nm, match the energy of Si band gaps of Si-based solar cells. Therefore, these kinds of materials are promising candidates for applications that require modifying if solar spectrums and enhancement of conversion efficiency of Si-based solar cells.

摘要

本文采用微波辅助水热法(M-H)合成了Tb3+-Yb3+共掺杂的CeF3纳米荧光粉。样品在室温下的激发和发射光谱表明,样品吸收250nm至280nm的紫外光,并在300nm处发光。这对应于Ce3+从5D到4F的跃迁,480nm、540nm、583nm、620nm对应于Tb3+从5D4到7F6、5、4、3的跃迁,973nm对应于Yb3+从2F5/2到2F7/2的跃迁。在发射光谱中,很明显Ce3+和Tb3+的发射强度随着Yb3+含量的增加而降低,而Yb3+的发射强度增加。这表明可能发生从Ce3+到Yb3+,以及从Ce3+到Tb3+再到Yb3+的能量转移。在近红外发射区域,注意到在260nm激发下观察到以973nm为中心的明显发射。这是由于Yb3+离子的2FJ(J = 5/2,7/2)不同斯塔克能级之间的跃迁。这也表明存在从Ce3+离子到Tb3+然后到Yb3+的能量转移。Tb3+-Yb3+共掺杂的CeF3纳米荧光粉的能量转移导致在900 - 1050nm处有强烈的近红外发射,与硅基太阳能电池的硅带隙能量相匹配。因此,这类材料有望用于需要修改太阳光谱和提高硅基太阳能电池转换效率的应用中。

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