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首页> 外文期刊>The journal of physics and chemistry of solids >LUMINESCENCE OF BI3+ IONS AND ENERGY TRANSFER FROM BI3+ IONS TO EU3+ IONS IN SILICA GLASSES PREPARED BY THE SOL-GEL PROCESS
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LUMINESCENCE OF BI3+ IONS AND ENERGY TRANSFER FROM BI3+ IONS TO EU3+ IONS IN SILICA GLASSES PREPARED BY THE SOL-GEL PROCESS

机译:溶胶-凝胶法制备的二氧化硅玻璃中BI3 +离子的发光和从BI3 +离子到EU3 +离子的能量转移

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摘要

Luminescence of Bi3+ ions and energy transfer from Bi3+ ions to Eu3+ ions in silica glasses prepared by the sol-gel process have been investigated. The results showed that the excitation band of Bi3+ ions corresponds to the S-1(0) --> P-1(1) transition and emission spectra consists of a single broad band without structure centred at 395 nm, which corresponds to P-3(1) --> S-1(0) transition. When a small amount of Bi3+ ions was introduced to 1 mol% Eu3+ ions the doped silica gel glass emission intensity of Eu3+ ions got significantly stronger, which suggests very efficient energy transfer from Bi3+ ions to Eu3+ ions. It can be assigned to significant energy overlap between the emission band of the Bi3+ ion and the excitation band of the Eu3+ ion. However, due to a larger energy overlap between emission and excitation bands of Bi3+, when Bi3+ ion concentration in silica gel glasses was more than 0.5 mol% the probability of energy transfer between Bi3+ ions increased rapidly and the probability of energy transfer from Bi3+ ions to Eu3+ ions decreased relatively. As a consequence, the sensitized effectiveness of the Bi3+ ion on the emission spectrum of the Eu3+ ion drastically decreased with increasing Bi3+ ion concentration. [References: 10]
机译:研究了溶胶-凝胶法制备的石英玻璃中Bi3 +离子的发光以及能量从Bi3 +离子向Eu3 +离子的转移。结果表明,Bi3 +离子的激发带对应于S-1(0)-> P-1(1)跃迁,发射光谱由单个宽带组成,中心为395 nm,对应于P- 3(1)-> S-1(0)转换。当将少量Bi3 +离子引入1 mol%Eu3 +离子时,Eu3 +离子的掺杂硅胶玻璃发射强度显着增强,这表明从Bi3 +离子到Eu3 +离子的能量转移非常有效。可以将其分配给Bi3 +离子的发射带和Eu3 +离子的激发带之间的显着能量重叠。然而,由于Bi3 +的发射带和激发带之间有较大的能量重叠,所以当硅胶玻璃中的Bi3 +离子浓度大于0.5 mol%时,Bi3 +离子之间的能量转移概率会迅速增加,并且Bi3 +离子之间的能量转移概率会增大。 Eu3 +离子相对减少。结果,随着Bi 3+离子浓度的增加,Bi 3+离子对Eu 3+离子的发射光谱的敏化效力急剧降低。 [参考:10]

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