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Development of zirconia based phosphors for application in lighting and as luminescent bioprobes =

机译:用于照明和发光生物探针的氧化锆基荧光粉的开发=

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摘要

The strong progress evidenced in photonic and optoelectronic areas, accompanied by an exponential development in the nanoscience and nanotechnology, gave rise to an increasing demand for efficient luminescent materials with more and more exigent characteristics. In this field, wide band gap hosts doped with lanthanide ions represent a class of luminescent materials with a strong technological importance. Within wide band gap material, zirconia owns a combination of physical and chemical properties that potentiate it as an excellent host for the aforementioned ions, envisaging its use in different areas, including in lighting and optical sensors applications, such as pressure sensors and biosensors. Following the demand for outstanding luminescent materials, there is also a request for fast, economic and an easy scale-up process for their production. Regarding these demands, laser floating zone, solution combustion synthesis and pulsed laser ablation in liquid techniques are explored in this thesis for the production of single crystals, nanopowders and nanoparticles of lanthanides doped zirconia based hosts. Simultaneously, a detailed study of the morphological, structural and optical properties of the produced materials is made. The luminescent characteristics of zirconia and yttria stabilized zirconia (YSZ) doped with different lanthanide ions (Ce3+ (4f1), Pr3+ (4f2), Sm3+ (4f5), Eu3+ (4f6), Tb3+ (4f8), Dy3+ (4f9), Er3+ (4f11), Tm3+ (4f12), Yb3+ (4f13)) and co-doped with Er3+,Yb3+ and Tm3+,Yb3+ are analysed. Besides the Stokes luminescence, the anti- Stokes emission upon infrared excitation (upconversion and black body radiation) is also analysed and discussed. The comparison of the luminescence characteristics in materials with different dimensions allowed to analyse the effect of size in the luminescent properties of the dopant lanthanide ions. The potentialities of application of the produced luminescent materials in solid state light, biosensors and pressure sensors are explored taking into account their studied characteristics.
机译:光子和光电子领域的强劲进展,伴随着纳米科学和纳米技术的迅猛发展,对具有越来越多的特性的高效发光材料的需求不断增长。在该领域中,掺杂有镧系元素离子的宽带隙基质代表了一类具有很强技术重要性的发光材料。在宽带隙材料中,氧化锆具有多种物理和化学特性,可增强其作为上述离子的极佳主体,并计划将其用于不同领域,包括照明和光学传感器应用,例如压力传感器和生物传感器。随着对杰出的发光材料的需求,还要求快速,经济和容易地扩大其生产过程。针对这些需求,本文研究了激光浮区,固溶燃烧合成和液体中的脉冲激光烧蚀技术,以生产镧系元素掺杂的氧化锆基主体的单晶,纳米粉末和纳米颗粒。同时,对所生产材料的形态,结构和光学性质进行了详细研究。掺杂了不同镧系元素离子(Ce3 +(4f1),Pr3 +(4f2),Sm3 +(4f5),Eu3 +(4f6),Tb3 +(4f8),Dy3 +(4f9),Er3 +(3)的氧化锆和氧化钇稳定的氧化锆(YSZ)的发光特性分析了4f11),Tm3 +(4f12),Yb3 +(4f13))以及共掺有Er3 +,Yb3 +和Tm3 +,Yb3 +的Tm3 +(4f12),Yb3 +(4f13))。除了斯托克斯发光以外,还分析和讨论了红外激发时的反斯托克斯发射(上转换和黑体辐射)。通过比较不同尺寸材料的发光特性,可以分析尺寸对掺杂镧系元素离子发光性能的影响。考虑到它们的研究特性,探索了所产生的发光材料在固态光,生物传感器和压力传感器中的应用潜力。

著录项

  • 作者

    Soares, Maria Rosa Nunes.;

  • 作者单位

    Universidade de Aveiro (Portugal).;

  • 授予单位 Universidade de Aveiro (Portugal).;
  • 学科 Materials science.;Nanotechnology.;Electrical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 345 p.
  • 总页数 345
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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