首页> 外文期刊>Journal of display technology >Red, Green, and Blue Light Through Cooperative Up-Conversion in Sol-Gel Thin Films Made With ${hbox{Yb}}_{0.80}{hbox{La}}_{0.15}{hbox{Tb}}_{0.05}{hbox{F}}_{3}$ and ${hb
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Red, Green, and Blue Light Through Cooperative Up-Conversion in Sol-Gel Thin Films Made With ${hbox{Yb}}_{0.80}{hbox{La}}_{0.15}{hbox{Tb}}_{0.05}{hbox{F}}_{3}$ and ${hb

机译:通过$ {hbox {Yb}} _ {0.80} {hbox {La}} _ {0.15} {hbox {Tb}} _ {0.05制成的Sol-Gel薄膜中的协同上转换产生红色,绿色和蓝色光} {hbox {F}} _ {3} $和$ {hb

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摘要

Silica and zirconium dioxide sol-gel thin films made with Yb0.80La0.15Tb0.05F3 or Yb 0.80La0.15Eu0.05F3 nanoparticles are reported. Bright blue (413 and 435 nm), green (545 nm), and red (585 and 625 nm) emissions are produced from Tb3+ ions through cooperative up-conversion of 980 nm light. Similarly, red (591 and 612 nm) emission is generated from Eu3+ ions. These up-convertors may find use in white light sources. The cooperative up-conversion of Yb3+-Tb3+ ions is more efficient than of Yb3+-Eu3+ ions because the efficiency of energy transfer from excited Yb3+ ions to a Tb 3+ ion (0.37) is more than two-times higher than of excited Yb3+ ions to a Eu3+ ion (0.15), as estimated from the lifetime of excited Yb3+ ion. The estimated quantum yields of both Tb3+ ion and Eu3+ ion emissions are on the order of 40%, and hence are not the cause of the difference in efficiency. This approach does not work for Sm3+, Pr3+ , and Dy3+. Incorporation of the respective Ln3+ ions in nanoparticles is crucial, as controls, in which the various Ln3+ ions are incorporated directly into the sol-gel, that do not show cooperative up-conversion
机译:报道了由Yb0.80La0.15Tb0.05F3或Yb 0.80La0.15Eu0.05F3纳米粒子制成的二氧化硅和二氧化锆溶胶-凝胶薄膜。 Tb3 +离子通过协同上转换980 nm光而产生明亮的蓝色(413和435 nm),绿色(545 nm)和红色(585和625 nm)发射光。同样,从Eu3 +离子发出红色(591和612 nm)的光。这些上变频器可用于白光源。 Yb3 + -Tb3 +离子的协同上转换比Yb3 + -Eu3 +离子更有效,因为从激发的Yb3 +离子到Tb 3+离子的能量转移效率(0.37)比激发的Yb3 +离子高两倍以上。由激发的Yb3 +离子的寿命估算得出Eu3 +离子为(0.15)。 Tb3 +离子和Eu3 +离子发射的估计量子产率均为40%左右,因此不是效率差异的原因。此方法不适用于Sm3 +,Pr3 +和Dy3 +。作为对照,将各个Ln3 +离子掺入纳米颗粒是至关重要的,因为对照中各种Ln3 +离子直接掺入溶胶-凝胶中,没有协同上转换

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