Ce-Sm共掺杂原位合成纳米复合材料的能量转移:揭示增强发光的结构、形态和光致发光特性

IF 5.8 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Materials Research Bulletin Pub Date : 2025-06-01 Epub Date: 2025-02-08 DOI:10.1016/j.materresbull.2025.113350
Ashima Makhija, Sangeeta Kadyan, Manju Nain, Anil Ohlan, Sajjan Dahiya, R. Punia, A.S. Maan
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摘要

Ce³+ -Sm³+共掺杂纳米复合荧光粉MgO-La1-x-yCexSmyAlO3 (x = 0.009;y = 0 ~ 0.04),采用Pechini溶胶-凝胶法合成。XRD和Rietveld细化证实了MgO的面心立方晶体结构和LaAlO₃的菱形结构。EDAX FESEM显示晶粒不均匀,元素分布均匀。纳米复合材料的光学带隙在5.06 ~ 5.53 eV之间。利用光致发光(PL)激发和发射光谱以及时间分辨PL来研究Ce³⁺到Sm³⁺的能量转移行为。在MgO-La0.951Ce0.009Sm0.04AlO3中,能量传递机制归因于d-d相互作用,传递效率为~ 80%。在所研究的纳米复合材料中,MgO-La0.961Ce0.009Sm0.03AlO3的发光强度最大,甚至高于La0.961Ce0.009Sm0.03AlO3。对相关色温(CCT)和CIE 1931色度坐标等参数的分析,证明了其作为绿色到橙色可调冷荧光粉的潜力,表明其适用于各种光子应用。
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Energy transfer in Ce-Sm co-doped in-situ synthesized nanocomposites: Unveiling structural, morphological and photoluminescent properties for enhanced luminescence
The Ce³⁺-Sm³⁺ co-doped nanocomposite phosphors, MgO-La1-x-yCexSmyAlO3 (x = 0.009; y = 0 – 0.04), were synthesized via Pechini sol-gel method. XRD and Rietveld refinements corroborated the face-centered cubic crystal structure for MgO and rhombohedral structure for LaAlO₃. FESEM with EDAX revealed inhomogeneous grains with uniform elemental distribution. The optical bandgaps of the nanocomposites were found to range between 5.06 and 5.53 eV. Photoluminescence (PL) excitation and emission spectra, along with time-resolved PL, have been employed to investigate energy transfer behavior from Ce³⁺ to Sm³⁺. The energy transfer mechanism has been attributed to d-d interlinkages, with a transfer efficiency of ∼80% in the MgO-La0.951Ce0.009Sm0.04AlO3. The nanocomposite phosphor MgO-La0.961Ce0.009Sm0.03AlO3 exhibited maximum luminescence among the studied nanocomposites, even higher than the nanophosphor La0.961Ce0.009Sm0.03AlO3. Analysis of parameters, such as correlated color temperature (CCT) and CIE 1931 chromaticity coordinates, demonstrated its potential as a green-to-orange color-tunable cool phosphor, indicating its suitability for diverse photonic applications.
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来源期刊
Materials Research Bulletin
Materials Research Bulletin 工程技术-材料科学:综合
CiteScore
9.80
自引率
5.60%
发文量
372
审稿时长
42 days
期刊介绍: Materials Research Bulletin is an international journal reporting high-impact research on processing-structure-property relationships in functional materials and nanomaterials with interesting electronic, magnetic, optical, thermal, mechanical or catalytic properties. Papers purely on thermodynamics or theoretical calculations (e.g., density functional theory) do not fall within the scope of the journal unless they also demonstrate a clear link to physical properties. Topics covered include functional materials (e.g., dielectrics, pyroelectrics, piezoelectrics, ferroelectrics, relaxors, thermoelectrics, etc.); electrochemistry and solid-state ionics (e.g., photovoltaics, batteries, sensors, and fuel cells); nanomaterials, graphene, and nanocomposites; luminescence and photocatalysis; crystal-structure and defect-structure analysis; novel electronics; non-crystalline solids; flexible electronics; protein-material interactions; and polymeric ion-exchange membranes.
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