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通过多极相互作用过程实现共掺杂氧化物玻璃中的强宽带下转换。

Intense ultra-broadband down-conversion in co-doped oxide glass by multipolar interaction process.

作者信息

Liu Zijun, Yang Luyun, Dai Nengli, Chu Yingbo, Chen Qiaoqiao, Li Jinyan

机构信息

Huazhong University of Science and Technology, College of Optoelectronic Science and Engineering, Wuhan National Laboratory for Optoelectronics, Wuhan 430074, China.

出版信息

Opt Express. 2013 May 20;21(10):12635-42. doi: 10.1364/OE.21.012635.

Abstract

We report that Eu(2+) can be an efficient sensitizer for Yb(3+) and a broadband absorber for blue solar spectra in the host of oxide glass. The greenish 4f → 5d transition of Eu(2+) and the characteristic near-infrared emission of Yb(3+) were observed, with the blue-light of xenon lamp excitation. The 5d energy can be adjusted by the host and the energy transfer efficiency can be enhanced. The quantum efficiency is up to 163.8%. Given the broad excitation band, high absorption coefficient and excellent mechanical, thermal and chemical stability, this system can be useful as down-conversion layer for solar cells.

摘要

我们报道,在氧化物玻璃基质中,Eu(2+)可以是Yb(3+)的高效敏化剂以及蓝色太阳光谱的宽带吸收体。在氙灯激发的蓝光下,观察到了Eu(2+)的绿色4f→5d跃迁以及Yb(3+)的特征近红外发射。5d能级可通过基质进行调节,且能量转移效率能够得到提高。量子效率高达163.8%。鉴于其宽激发带、高吸收系数以及优异的机械、热和化学稳定性,该体系可作为太阳能电池的下转换层。

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