首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Bluish white emitting Sr2CeO4 and red emitting Sr2CeO4:Eu~(3+) nanoparticles: optimization of synthesis parameters, characterization, energy transfer and photoluminescence
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Bluish white emitting Sr2CeO4 and red emitting Sr2CeO4:Eu~(3+) nanoparticles: optimization of synthesis parameters, characterization, energy transfer and photoluminescence

机译:发蓝光的白色Sr2CeO4和发蓝光的Sr2CeO4:Eu〜(3+)纳米粒子:合成参数,表征,能量转移和光致发光的优化

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摘要

Blue-white light emitting Sr2CeO4 and red emitting Sr2CeO4:Eu~(3+) nanoparticles were prepared using a polymeric precursor route. The synthetic conditions were optimized to achieve a suitable calcination temperature and heat treatment time. The systems were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), thermogravimetric analysis (TGA) and differential thermal analysis (DTA). The concentration of dopant ions was optimized to maximise the PL intensity. The effect of concentration on excitation, emission and lifetime spectroscopy was investigated in detail. The critical energy-transfer distance for the Eu~(3+) ions was evaluated and based on this, the quenching mechanism was verified to be a multipole-multipole interaction. The Judd-Ofelt parameter and other photophysical properties were evaluated for all samples. The observed trend in the J-0 parameter was correlated with the characteristics of the chemical environments around the Eu~(3+) ions, with respect to the composition of the europium ion.
机译:使用聚合物前体路线制备了发蓝光的Sr2CeO4和发红光的Sr2CeO4:Eu〜(3+)纳米粒子。优化合成条件以达到合适的煅烧温度和热处理时间。通过X射线衍射(XRD),扫描电子显微镜(SEM),热重分析(TGA)和差热分析(​​DTA)对系统进行了表征。优化了掺杂离子的浓度以最大化PL强度。详细研究了浓度对激发,发射和寿命光谱的影响。评价了Eu〜(3+)离子的临界能量转移距离,并据此验证了猝灭机理为多极-多极相互作用。对所有样品评估了Judd-Ofelt参数和其他光物理性质。就-0离子的组成而言,在J-0参数中观察到的趋势与Eu〜(3+)离子周围的化学环境特征相关。

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