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Preparation of transparent suspensions of tunable-emission CaMoO_4:(1-x) Eu~(3+),(x)Tb~(3+) nanophosphors

机译:可调发射Camoo_4的透明悬浮液的制备:(1-x)Eu〜(3 +),(x)Tb〜(3+)纳米磷

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摘要

The synthesis of transparent suspensions of tunable-emission nanophosphors for application in transparent displays is scarcely investigated. We developed a new method for preparing transparent suspensions of CaMoO4:(1-x)Eu3+,(x)Tb3+ (x = 0, 0.50, 0.60, 0.70, 0.80, 0.90, 0.92, 0.94, 0.96, 0.98, and 1) nanophosphors. The CaMoO4:(1-x)Eu3+,(x)Tb3+ nanophosphors were prepared by reacting Ca-oleate (with Eu-oleate and/or Tboleate) complexes in hexane with an aqueous (NH4)(6)Mo7O24 solution via a solvothermal reaction in a hexane-water bilayer system. The Ca-oleate (with Eu-oleate and/or Tb-oleate) complexes were prepared by a phase transfer reaction. TEM revealed slightly elongated spherical particles with a mean length and width of 9.5 +/- 3.6 and 4.1 +/- 1.2 nm, respectively. The hydrophobic CaMoO4:(1-x)Eu3+,(x)Tb3+ nanophosphors were soluble in nonpolar solvents because of the presence of long alkyl chains of the capping agents coating the outer surfaces of the nanophosphor particles. The photoluminescence emission spectra of the CaMoO4:Eu3+ and CaMoO4:Tb3+ nanophosphors exhibited intense peaks in the red (614 nm) and green (545 nm) regions, respectively; these emissions originated from the D-5(0) - F-7(2) transition of the Eu3+ ion and the D-5(4) - F-7(5) transition of the Tb3+ ion in the CaMoO4 host, respectively. The emission colors in the green-red spectral region could be finely tuned by adjusting the molar fraction of Tb3+ ions in the CaMoO4:(1-x)Eu3+,(x)Tb3+ nanophosphors.
机译:几乎已经研究了在透明显示器中施加可调发射纳米膦的透明悬浮液的合成。我们开发了一种制备Camoo4的透明悬浮液的新方法:(1-x)Eu3 +,(x)Tb3 +(x = 0,0.50,0.60,0.70,0.0,0.90,0.92,0.94,0.96,0.98和1)纳米磷。通过通过溶剂热反应使Ca-Oleate(用Eu-Oleate和/或Tboleate)络合物在己烷中与己烷中的Ca-Oleate(用Eu-Oleate和/或Tboleate)复合物反应,通过溶剂热反应使Ca-Oleate(用Eu-Oleate和/或Tboleate)复合物反应来制备Camoo4:(x)Tb3 +纳米膦酰基在己烷水双层系统中。通过相转移反应制备Ca-油酸(用Eu-Oleate和/或Tb-Oleate)配合物。 TEM显露于略微细长的球形颗粒,平均长度和宽度为9.5 +/- 3.6和4.1 +/- 1.2nm。由于覆盖纳米级颗粒的外表面的封装剂的存在,疏水性Camoo4:(1-x)Eu3 +,(x)Tb3 +纳米膦溶于非极性溶剂。 CAMO4:EU3 +和CAMO4:TB3 +纳米磷的光致发光发射光谱分别在红色(614nm)和绿色(545nm)区域中表现出强烈峰;这些排放源自EU3 +离子的D-5(0) - > F-7(2)转变和CAMO4主体中TB3 +离子的D-5(4) - > F-7(5)转变,分别。通过调节Camoo4:(1-X)EU3 +,(X)Tb3 +纳米膦酰基中Tb3 +离子的摩尔分数,可以通过调节Tb3 +离子的摩尔分数来精细调整绿色红色光谱区域中的发光颜色。

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