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Effect of codoping of Zn2+ ion on the upconversion of Er3+-Yb3+ codoped Y2O3 phosphor

机译:Zn 2 + 离子共掺杂对Er 3 + -Yb 3 + 共掺杂Y2O3荧光粉上转换的影响

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The frequency upconversion emission from Er3+-Yb3+ codoped Y2O3 phosphor synthesized by low temperature, urea assisted combustion technique has been studied upon excitation at 980 nm diode laser. The effect of incorporation of Zn2+ ion on upconversion (UC) emission bands around 409 nm, 523 nm, 551 nm, 661 nm arises due to the transitions 2H9/2 → 4I15/2, 2H11/2 → 4I15/2, 4S3/2 → 4I15/2 and 4F9/2 → 4I15/2 of Er3+ ions have been investigated. The basic mechanism involved in UC process and reason of intensity enhancement on Zn2+ codoping have been explained by energy level structure and decay time analyses. The present study indicates that the developed phosphors may be of significant interest for use in photonic applications.
机译:在980nm二极管激光激发时,研究了由低温,尿素辅助燃烧技术合成的ER 3 + -yb 3 + / sup>编码的Y2O3磷光体的频率上变化。掺入Zn 2 + 离子对上变化(UC)发射带的影响约为409nm,523nm,551nm,661nm,引起的过渡 2 h9 / 2→ 4 i15 / 2, 2 h11 / 2→ 4 i15 / 2, 4 s3 / 2→ 4 I15 / 2和 4 f9 / 2→ 4 I15 / 2的ER 3 + 离子进行了研究。通过能量水平结构和衰减时间分析,已经解释了UC过程和强度增强的强度增强的基本机制和强度增强的原因。衰减时间分析已经解释了Zn 2 + 编码。本研究表明,发育荧光体可能对光子应用中的使用可能是显着的兴趣。

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