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FUNCTIONALIZED LUMINESCENT YVO_4:LN~(3+) NANOPARTICLES

机译:功能发光YVO_4:LN〜(3+)纳米粒子

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摘要

The synthesis and the emission properties of colloidal YVO_4:Ln nanocrystals (8nm in diameter) are investigated, where Ln = Eu, Nd, Yb, Er. The nanoparticles synthesized here are constituted of a (Y, Ln)VO_4 crystalline core and stabilized by a lanthanide-citrate complexing shell. Surface derivatization of the particles can be achieved through the controlled growth of a silicate shell using a functionalized silane, with elimination of the citrate shell. The luminescence of the Eu~(3+) -doped YVO_4 colloids is studied in details and compared to the bulk material. Chemical treatments are achieved in order to explain the observed differences. Improvement of the emission quantum yield after the transfer of the colloidal particles into D_2O shows that surface OH groups act as efficient quenchers of the Eu~(3+) emission. The growth of a silica shell around the particles decreases the optimum europium concentration, showing that energy transfers within the nanoparticles are limited by the quenching of the excited states of the vanadate ions. Moreover, site selective excitation spectroscopy seems to prove the coexistence of core sites and surface sites for the europium ions. Finally, colloidal nanoparticles exhibit an emission yield of about 25%, which appears already suitable for some applications.
机译:研究了胶体YVO_4:Ln纳米晶体(直径为8nm)的合成和发射特性,其中Ln = Eu,Nd,Yb,Er。在此合成的纳米颗粒由(Y,Ln)VO_4晶体核构成,并由镧系元素柠檬酸盐络合壳稳定。颗粒的表面衍生化可以通过使用官能化的硅烷控制硅酸盐壳的生长而消除柠檬酸盐壳来实现。详细研究了Eu〜(3+)掺杂YVO_4胶体的发光,并与本体材料进行了比较。进行化学处理是为了解释观察到的差异。胶体粒子转移到D_2O中后发射量子产率的提高表明表面OH基团是Eu〜(3+)发射的有效猝灭剂。二氧化硅壳在颗粒周围的生长会降低最佳euro浓度,这表明纳米颗粒内的能量转移受到钒酸盐离子激发态猝灭的限制。而且,位点选择性激发光谱似乎证明了core离子的核心位点和表面位点并存。最后,胶体纳米颗粒的发射产率约为25%,看来已经适合某些应用。

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