首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Controlled synthesis and up/down-conversion luminescence of self-assembled hierarchical architectures of monoclinic AgRE(WO4)2:Ln~(3+) (RE = Y, La, Gd, Lu; Ln = Eu, Tb, Sm, Dy, Yb/Er, Yb/Tm)
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Controlled synthesis and up/down-conversion luminescence of self-assembled hierarchical architectures of monoclinic AgRE(WO4)2:Ln~(3+) (RE = Y, La, Gd, Lu; Ln = Eu, Tb, Sm, Dy, Yb/Er, Yb/Tm)

机译:单斜AgRE(WO4)2:Ln〜(3+)(RE = Y,La,Gd,Lu; Ln = Eu,Tb,Sm,Dy, Yb / Er,Yb / Tm)

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摘要

Monoclinic AgRE(WO4)2 (RE = Y, La, Gd, Lu) with novel self-assembled hierarchical architectures were fabricated via a facile and mild liquid route. The phase and morphology of these products are strongly dependent on the pH of the mixed dispersion. Polyvinylpyrrolidone (PVP) also has a crucial effect on the formation of the hierarchical ellipsoid-shaped structures. The possible formation mechanism was proposed based on the time-dependent experiments. These hierarchical ellipsoids possess a low filling factor and high internal porosity, thus are well suited for applications such as sensors, catalysts and optical devices. In addition, monoclinic AgRE(WO4)2 (RE = La, Y, Gd, Lu) exhibit excellent multicolor up/ down-conversion (UC/DC) luminescence after incorporating Ln~(3+) (Ln = Eu, Tb, Sm, Dy, Yb/Er, Yb/Tm) cations. Notably, AgLa(WO4)2:Eu~(3+) (2 mol%), AgGd(WO4)2:Eu~(3+) (2 mol%) and AgY(WO4)2:Sm~(3+) (2 rnol%) radiate white emission under UV excitation. The quantum yields of AgY(WO4)2:Tb~(3+) (95%), AgY(WO4)2:Dy~(3+)(56%) and AgLa(WO4)2:Eu~(3+) (40%) are rather high.
机译:通过一种简便而温和的液体路线,制造了具有新型自组装层次结构的单斜AgRE(WO4)2(RE = Y,La,Gd,Lu)。这些产物的相和形态在很大程度上取决于混合分散体的pH。聚乙烯吡咯烷酮(PVP)对分层椭圆形结构的形成也具有至关重要的作用。基于时变实验,提出了可能的形成机理。这些分层的椭圆体具有较低的填充系数和较高的内部孔隙率,因此非常适合诸如传感器,催化剂和光学设备等应用。此外,单斜AgRE(WO4)2(RE = La,Y,Gd,Lu)在掺入Ln〜(3+)(Ln = Eu,Tb,Sm)后表现出出色的多色上/下转换(UC / DC)发光,Dy,Yb / Er,Yb / Tm)阳离子。值得注意的是,AgLa(WO4)2:Eu〜(3+)(2摩尔%),AgGd(WO4)2:Eu〜(3+)(2摩尔%)和AgY(WO4)2:Sm〜(3+) (2 mol%)在紫外线激发下辐射白色发射。 AgY(WO4)2:Tb〜(3+)(95%),AgY(WO4)2:Dy〜(3 +)(56%)和AgLa(WO4)2:Eu〜(3+)的量子产率(40%)很高。

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