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Non-stabilized europium-doped lanthanum oxyfluoride and fluoride nanoparticles well dispersed in thin silica films

机译:非稳定化的铕掺杂的氧化镧和氟化物纳米颗粒良好分散在薄二氧化硅膜中

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摘要

Well dispersed non-stabilized lanthanum oxyfluoride and fluoride nanoparticles were prepared in situ in thin silica films from rapid thermal decomposition of lanthanum tris-trifluoroacetate under nitrogen atmosphere. The thin silica films were obtained from sol-gel method and spin-coating. The spectroscopic properties of the non-stabilized nanoparticles as well the nanoparticles dispersed into thin silica films were studied in order to apply the system in future photonic applications such as erbium(III)-doped waveguide amplifiers. The non-stabilized nanoparticles were characterized by XRD, FT-IR, Transmission Electron Microscopy, Confocal Raman Spectroscopy and steady-state and timeresolved Luminescence Spectroscopy and these characterizations were used as a starting point to characterize the nanoparticles dispersed into the films. According to the temperature of the thermal treatments, the non-stabilized nanoparticles may present Eu(III)-doped LaOF in tetragonal and rhombohedral phases as well as a mixed phase of Eu(m)-doped LaF3 and LaOF. The tetragonal LaOF phase has C-4v La(m) point symmetry and is more symmetric than the rhombohedral LaOF phase, where the La(III) ion has C-3v symmetry, consequently tetragonal LaOF presented lower Omega(2) values than rhombohedral LaOF. Theoretical calculations of Judd-Ofelt intensity parameters were also performed and were in good agreement with the experimental values. The samples containing the mixed phase of LaF3 and LaOF presented lower values of intensity parameters than pure LaOF phases. The samples containing the mixed phase presented higher values of emission lifetimes and quantum efficiencies. Confocal Raman spectroscopy of these samples complements the luminescence studies and indicates which LaOF phase is present in the mixed phase of LaF3 and LaOF. The rapid thermal decomposition of the precursor tris-trifluoroacetate on thin silica films results in well-dispersed 10 nm nanoparticles. The mixed phase of LaF3 and LaOF phases is also present in thin films. The luminescence of the Eu(III) and Er(III)/Yb(III)-doped LaF3/LaOF nanoparticles containing thin silica films presented broad emission bands suggesting that in the future the systems may be applied as erbium(III)-doped waveguide amplifiers.
机译:在氮气气氛下,原位在薄二氧化硅膜中原位制备良好的非稳定化镧和氟化物纳米粒子,从氮气氛中的快速热分解镧系元素Tris-三氟乙酸酯。从溶胶 - 凝胶法和旋涂中获得薄二氧化硅膜。研究了非稳定化纳米颗粒的光谱性质,也是分散在薄二氧化硅膜中的纳米颗粒,以便在未来的光子应用中施加系统,例如铒(III)掺杂的波导放大器。通过XRD,FT-IR,透射电子显微镜,共聚焦拉曼光谱和稳态和分钟发光光谱,并使用这些表征作为表征分散到薄膜中的纳米颗粒的起点的起始点的非稳定化纳米颗粒。根据热处理的温度,非稳定化的纳米颗粒可以在四方和菱形相中存在Eu(III)掺杂的Laof以及Eu(M)的混合相 - 掺杂的LaF3和LaOF。四边形LAOF相具有C-4V LA(M)点对称性,并且比菱形LAOF相位更对称,其中LA(III)离子具有C-3V对称性,因此四方LAOF呈现出比菱面向LAOF的较低ω(2)值呈现出较低的OMEGA(2)值。还进行了judd-elt强度参数的理论计算,并与实验值吻合良好。含有LAF3和LAOF的混合相的样品呈现比纯LAOF相比的强度参数的较低值。含有混合相的样品呈现出较高的发射寿命值和量子效率。这些样品的共焦拉曼光谱分子补充了发光研究,并表明了LaF3和洗衣的混合相中存在的LAOF阶段。前体Tris-三氟乙酸酯在薄二氧化硅膜上的快速热分解导致井分散的10nm纳米颗粒。 LaF3和LaOF相的混合相也存在于薄膜中。 Eu(III)和ER(III)/ Yb(III)的发光 - 含有薄二氧化硅膜的掺杂LaF3 / LaOf纳米颗粒,呈现了广泛的发射带,表明在未来的系统中可以作为铒(III)掺杂的波导放大器。

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