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首页> 外文期刊>CERAMICS INTERNATIONAL >Structural-microstructural characterization and optical properties of Eu3+, Tb3+-codoped LaPO4 center dot nH(2)O and LaPO4 nanorods hydrothermally synthesized with microwaves
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Structural-microstructural characterization and optical properties of Eu3+, Tb3+-codoped LaPO4 center dot nH(2)O and LaPO4 nanorods hydrothermally synthesized with microwaves

机译:Eu3 +,Tb3 + -codopeded Lapo4中心点NH(2)O和LAPO4纳米用微波加热的结构 - 微结构表征和光学性质

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Rhabdophane-type Eu3+,Tb3+-codoped LaPO4 center dot nH(2)O single-crystal nanorods with the compositions La0. 99999-x EUxTb0.00001PO4 center dot nH(2)O (x = 0-0.03), La0.99999-yThyEu0.00001PO4 center dot n'H2O (y = 0-0.010), and La0.99999-z TbzEU0.000007PO center dot n '' H2O (z = 0-0.012) were hydrothermally synthesized with microwaves. It is shown that the Eu3+,Tb3+ codoping does not affect the thermal stability of these nanorods, which is due to the formation of substitutional solid solutions with both Eu3+ and Tb3+ replacing La3+ in the crystal lattice. Moreover, it is also shown that monazite-typeEu(3+),Tb3+-codoped LaPO4 single-crystal nanorods can be obtained by calcining their rhabdophane-type Eu3+,Tb3+-codoped LaPO4 center dot(n,n' or n '')H2O counterparts at moderate temperature in air, and that they are thermally stable. It is also observed that, for the same Eu3+,Tb3+-codoping content, the monazite-type Eu3+,Tb3+-codoped LaPO4 nanorods exhibit higher photoluminescent efficiency than the rhabdophane-type Eu3+,Tb3+-codoped LaPO4 center dot(n,n' or n '')H2O nanorods. Moreover, it is found that the highest photoluminescence emission corresponds to the monazite-type La0.96999Eu0.02Tb0.00001PO4 nanorods for the La0.99999-xEUxTb0.00001PO4 system. However, for those compositions energy transfer from Tb3+ to Eu3+ does not occur. In addition, for an efficient energy transfer to occur, a content of at least 1 mol% Tb3+ is needed in all the studied materials.
机译:Rhabdophane型EU3 +,TB3 + - 耦合的LAPO4中心点NH(2)o用组合物LA0单晶纳米棒。 99999-X EUXTB0.00001PO4中心点NH(2)O(X = 0-0.03),LA0.99999-YTHYEU0.00001PO4中心点N'H2O(Y = 0-0.010),LA0.99999-Z TBZEU0.000007PO中心点N''H 2 O(Z = 0-0.012)用微波加湿。结果表明,EU3 +,TB3 +编码不会影响这些纳米棒的热稳定性,这是由于在晶格中与Eu3 +和Tb3 +替换La3 +的取代固溶溶液的形成。另外,还示出了Monazite-typeeu(3 +),Tb3 + -codoped的Lapo4单晶纳米棒可以通过煅烧其rhabdophane型Eu3 +,Tb3 + -codoped的Lapo4中心点(n,n'或n''而获得)获得H2O对应物在空气中温度适中,它们是热稳定的。还观察到,对于相同的Eu3 +,Tb3 + - 替换含量,Monazite型Eu3 +,Tb3 + -codoped的Lapo4纳米棒具有比Rhabdophane型Eu3 +,Tb3 + -codoped的Lapo4中心点(n,n'或)表现出更高的光致发光效率。 n'')H2O纳米棒。此外,发现最高光致发光发射对应于LA0.999999-XEUXTB0.00001PO4系统的Monazite-型La0.969990U0.02TB0.00001PO4纳米杆。然而,对于那些组合物,不会发生从Tb3 +至Eu3 +的能量转移。另外,为了发生有效的能量转移,在所有研究的材料中需要至少1mol%TB3 +的含量。

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