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Effect of Ce3+ Co-doping on GdP04:Tb3+ Nanoparticles: Photoluminescence and Energy Transfer Studies

机译:CE3 +共掺杂对GDP04:TB3 +纳米粒子的影响:光致发光和能量转移研究

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Low temperature synthesis of Tb3+-doped GdP04 nanoparticles sensitized with Ce3+ (Ce3+ = 0, 3, 5, 7 and 10 at.%) have been reported. Ethylene glycol was used as capping agent as well as reaction medium at 160 °C. The as-prepared particles crystallized in a monoclinic structure with an average crystallite size of 25-46 nm. From the photoluminescence study, enhanced emission of Tb3+ with co-doping of Ce3+ was attributed to efficient energy transfer from the sensitizer to activator. The luminescence emission intensity increases upto 5 at.% of Ce3+ and then decreases. Less efficient energy transfer from sensitizer to the activator with increasing concentration of sensitizer may be attributed to critical concentration of Ce3+ with the host or dipole-quadrupole interaction amongst the Ce3+ ions. Moreover, presence of -OH group in the samples will make them a potential target for biological labeling and optical devices.
机译:报道了用Ce3+(Ce3+=0,3,5,7和10 at.%)敏化Tb3+掺杂的GdP04纳米颗粒的低温合成。在160°C下,乙二醇用作封端剂和反应介质。所制备的颗粒以单斜结构结晶,平均晶粒尺寸为25-46 nm。根据光致发光研究,共掺杂Ce3+的Tb3+的发光增强归因于从敏化剂到活化剂的有效能量转移。发光强度增加至5 at.%然后降低。随着敏化剂浓度的增加,从敏化剂到活化剂的能量传递效率降低,这可能是由于Ce3+与主体的临界浓度或Ce3+离子之间的偶极-四极相互作用。此外,样品中-OH基团的存在将使其成为生物标记和光学设备的潜在目标。

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