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Dual light-emitting nanoparticles: second harmonic generation combined with rare-earth photoluminescence

机译:双发光纳米粒子:二次谐波产生与稀土光致发光结合

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Dual light emitting KTP@LaPO4:Eu nanoparticles have been synthesized and characterized. These core@shell heterostructures consisting of a KTP (KTiOPO4) single-crystal core and a Eu~(3+)-doped LaPO4 shell were synthesized by a coprecipitation method and controlled heterogeneous nucleation of LaPO4:Eu around the KTP nanocrystals. These nanoparticles exhibit both the SHG (second harmonic generation) signal of the KTP core and the PL (phototuminescence) emission of the doping europium ions of the shell. The orientation-dependent signal of SHG in contrast to the PL emission has been demonstrated through a detailed optical study at the single particle level. This property makes these dual emitting systems original nanoprobes for studying dynamic systems in biology. The versatility of the developed method can be straightforwardly adapted to other lanthanide ions to develop new multifunctional nanoprobes.
机译:已经合成并表征了双重发光的KTP @ LaPO4:Eu纳米粒子。通过共沉淀法合成了由KTP(KTiOPO4)单晶核和Eu〜(3+)掺杂的LaPO4壳组成的核@壳异质结构,并控制了KTP纳米晶周围LaPO4:Eu的异质成核。这些纳米颗粒既显示KTP核的SHG(二次谐波产生)信号,又显示壳的掺杂the离子的PL(光致发光)发射。与PL发射相反,SHG的取向相关信号已通过详细的光学研究在单个粒子水平上得到了证明。该特性使这些双发射系统成为研究生物学动态系统的原始纳米探针。所开发方法的多功能性可以直接适用于其他镧系离子,从而开发出新的多功能纳米探针。

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