Effect of Cd2+ and K+ Co-Doping on Upconversion Emission in Y2O3:Yb3+/Er3+ Phosphors and Application in Optical Thermometry

IF 1.5 3区 化学 Q3 CHEMISTRY, INORGANIC & NUCLEAR Russian Journal of Inorganic Chemistry Pub Date : 2024-11-30 DOI:10.1134/S0036023624602228
H. S. Deshmukh, G. G. Muley
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Abstract

The Cd2+ and K+ co-doped Y2O3:Yb3+/Er3+ upconversion phosphors were synthesized via the combustion route and analyzed for their crystal structure, spectroscopic properties, upconversion behavior, and optical thermometric capabilities. Powder X-ray diffraction analysis confirmed that the crystal structure of host remained intact, with varying lattice parameters observed: decreasing for lower concentrations of Cd2+ and K+ (1 mol %) and slightly increasing at 3 and 5 mol % doping. Scanning electron microscopy reveals the fine particulates of sizes around 100 nm in 5 mol % Cd2+ and K+ co-doped Y2O3:Yb3+/Er3+while without Cd2+ and K+co-doping, it shows agglomerated form with spherical and rod shaped particles.Spectroscopic analysis across the UV-visible-NIR spectral range (200–2000 nm) indicated that Cd2+ and K+ dopants did not alter the spectral characteristics of prepared upconversion phosphor Y2O3:Yb3+/Er3+. Under excitation of 980 and 932 nm diode lasers, the upconversion emission exhibited green and red bands attributed to Er3+ ions. The intensity of the red band was predominant under 980 nm excitation, whereas the green band showed higher emission intensities under 932 nm excitation. Cd2+ and K+ doping significantly influenced the emission intensities of both bands but did not affect the emission wavelengths, with intensities decreasing as dopant concentrations increased. The temperature-dependent upconversion emission intensity variation was studied for optical thermometric applications, revealing enhanced relative sensitivity in Cd2+ and K+ doped samples compared to undoped phosphor. The maximum relative sensitivity of 0.01455 K–1 at 303.15 K has been achieved with the 5 mol % Cd2+ and K+ co-doped upconversion phosphor, suggesting its potential for optical thermometry. Furthermore, evaluation of CIE color coordinates derived from upconversion emission spectra showed that Cd2+ and K+ doping had negligible impact on color chromaticity.

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Cd2+和K+共掺杂对Y2O3:Yb3+/Er3+荧光粉上转换发光的影响及其在光学测温中的应用
通过燃烧途径合成了Cd2+和K+共掺杂的Y2O3:Yb3+/Er3+上转换荧光粉,并对其晶体结构、光谱性质、上转换行为和光学测温能力进行了分析。粉末x射线衍射分析证实,主体的晶体结构保持完整,晶格参数发生变化:当Cd2+和K+浓度较低(1 mol %)时,晶格参数下降,当掺杂3和5 mol %时,晶格参数略有增加。扫描电镜观察发现,5mol %的Cd2+和K+共掺杂的Y2O3:Yb3+/Er3+颗粒大小在100 nm左右,而未掺杂Cd2+和K+的Y2O3:Yb3+/Er3+颗粒呈球状和棒状团聚。紫外-可见-近红外光谱范围(200-2000 nm)的光谱分析表明,Cd2+和K+掺杂剂没有改变制备的上转换荧光粉Y2O3:Yb3+/Er3+的光谱特性。在980和932 nm二极管激光器的激发下,上转换发射呈现出Er3+离子的绿、红条带。在980 nm激发下,红色波段的发射强度占优势,而在932 nm激发下,绿色波段的发射强度更高。Cd2+和K+的掺杂显著影响了两个波段的发射强度,但对发射波长没有影响,发射强度随掺杂浓度的增加而降低。在光学测温应用中,研究了温度依赖的上转换发射强度变化,揭示了与未掺杂的荧光粉相比,Cd2+和K+掺杂样品的相对灵敏度增强。在303.15 K下,5 mol % Cd2+和K+共掺杂的上转换荧光粉的最大相对灵敏度为0.01455 K - 1,表明其在光学测温方面的潜力。此外,由上转换发射光谱得出的CIE颜色坐标的评估表明,Cd2+和K+掺杂对颜色色度的影响可以忽略不计。
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来源期刊
Russian Journal of Inorganic Chemistry
Russian Journal of Inorganic Chemistry 化学-无机化学与核化学
CiteScore
3.10
自引率
38.10%
发文量
237
审稿时长
3 months
期刊介绍: Russian Journal of Inorganic Chemistry is a monthly periodical that covers the following topics of research: the synthesis and properties of inorganic compounds, coordination compounds, physicochemical analysis of inorganic systems, theoretical inorganic chemistry, physical methods of investigation, chemistry of solutions, inorganic materials, and nanomaterials.
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