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LUMINESCENT NANOPARTICLES: COLLOIDAL SYNTHESIS AND EMISSION PROPERTIES

机译:发光纳米粒子:胶体合成和排放性能

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This paper has described the different strategies that can be used for the colloidal synthesis of luminescent nanoparticles. The first studies concerned the case of Ⅱ-Ⅵ semiconductors, in which the luminescence is drastically affected by the surface trapping of excited carriers. Two strategies can be used to avoid surface trapping. The first consists of the elaboration of core/shell nanostructures by epitaxial growth of another semiconductor on the surface of the particles. This allows a limitation of the extension of the carrier's wavefunction at the surface of the particles and leads to a tremendous improvement of the emission. Another possibility consists of doping the nanoparticles with a luminescent ion (CdS:Mn). Rapid transfer of the energy of the excited carriers to the localized electrons of the luminescent ion avoids non radiative relaxation at the surface of the particles. High luminescent yields are also obtained, with an emission spectrum characteristic of the doping ion. The same strategy of using localized excited states is in fact commonly used for the elaboration of highly luminescent phosphors such as rare earth doped oxides. Recent investigations performed on YVO_4:Eu and LaPO_4:Ce,Tb show that nanoparticles exhibit high emission yields, which are nevertheless affected to some extent by the surface quenching species.
机译:本文描述了可用于胶体合成的发光纳米粒子的不同策略。第一研究涉及Ⅱ-α半导体的情况,其中发光受激发载体的表面捕获的急剧影响。可以使用两种策略来避免表面捕获。首先由颗粒表面上的另一半导体外延生长来制定核心/壳纳米结构。这允许限制载体的波芯在颗粒表面处的延伸,并导致发射的巨大改善。另一种可能性包括用发光离子(Cds:Mn)掺杂纳米颗粒。快速将激发载流子的能量转移到发光离子的局部电子避免了颗粒表面的非辐射松弛。还获得了高发光产率,具有掺杂离子的发射光谱特性。使用局部兴奋状态的相同策略实际上是常用于制定高度发光的磷光体,例如稀土掺杂氧化物。最近对YVO_4进行的研究:EU和LAPO_4:CE,TB表明,纳米颗粒表现出高排放产率,然而,这一定程度地受到表面猝灭物种。

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