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Cr掺杂对Eu掺杂LaVO荧光粉结构和光学性能的影响。

Effect of Cr doping on structural and optical properties of Eu doped LaVO phosphor.

作者信息

Rai Ekta, Yadav Ram Sagar, Kumar Dinesh, Singh Akhilesh Kumar, Fulari Vijay Janardhan, Rai Shyam Bahadur

机构信息

Department of Physics, Shivaji University Kolhapur 416004 India.

Department of Zoology, Institute of Science, Banaras Hindu University Varanasi 221005 India

出版信息

RSC Adv. 2023 Jan 31;13(7):4182-4194. doi: 10.1039/d2ra06962h.

Abstract

In this work, the Eu, Cr doped and co-doped LaVO phosphors have been prepared through a high temperature solid-state reaction method. The powder XRD patterns of phosphors are very sharp and intense, which reflects a highly crystalline nature of phosphors. The XRD data were also refined by a Rietveld refinement method. The particle size of the phosphor samples lies in the sub-micron to micron range. The existence of La, Eu, Cr, V and O elements was verified by EDS spectra. The FTIR spectra show various absorption bands due to different vibrating groups. The optical band gap of the phosphor decreases on increasing concentration of Cr ion. The photoluminescence excitation spectra of Eu, Cr co-doped LaVO phosphor exhibit bands due to Eu and Cr ions. The Eu doped LaVO phosphor exciting at 393 and 316 nm wavelengths gives intense red color at 614 nm due to the D → F transition of the Eu ion. When the Cr ion is co-doped in the Eu doped LaVO phosphor the emission spectra contain emission bands due to Eu and Cr ions. The emission intensity of Eu doped phosphor reduces due to energy transfer from Eu to Cr ions in presence of Cr ions upon 393 and 386 nm excitations. The lifetime of the D level of Eu ions decreases in the Eu, Cr co-doped LaVO phosphor, which also reflects the energy transfer. The Eu, Cr co-doped LaVO phosphor also produces a large amount of heat upon 980 nm excitation. Thus, the Eu, Cr co-doped LaVO phosphors may be used for LEDs, solid state lighting and heat generating devices.

摘要

在本工作中,通过高温固相反应法制备了铕、铬掺杂及共掺杂的钒酸镧荧光粉。荧光粉的粉末XRD图谱非常尖锐且强度高,这反映了荧光粉具有高度结晶的性质。XRD数据也通过Rietveld精修法进行了精修。荧光粉样品的粒径处于亚微米到微米范围内。通过能谱(EDS)证实了镧、铕、铬、钒和氧元素的存在。傅里叶变换红外光谱(FTIR)显示了由于不同振动基团产生的各种吸收带。随着铬离子浓度的增加,荧光粉的光学带隙减小。铕、铬共掺杂的钒酸镧荧光粉的光致发光激发光谱显示了由于铕和铬离子产生的谱带。在393和316 nm波长激发下的铕掺杂钒酸镧荧光粉由于铕离子从D→F跃迁在614 nm处发出强烈的红色。当铬离子共掺杂到铕掺杂的钒酸镧荧光粉中时,发射光谱包含由于铕和铬离子产生的发射带。在393和386 nm激发下,由于铬离子存在时铕离子向铬离子的能量转移,铕掺杂荧光粉的发射强度降低。在铕、铬共掺杂的钒酸镧荧光粉中,铕离子D能级的寿命缩短,这也反映了能量转移。铕、铬共掺杂的钒酸镧荧光粉在980 nm激发下也会产生大量热量。因此,铕、铬共掺杂的钒酸镧荧光粉可用于发光二极管(LED)、固态照明和发热器件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe2a/9890979/838f5e6bf1b0/d2ra06962h-f1.jpg

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