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首页> 外文期刊>The Journal of Chemical Physics >Charge transfer from Eu2+ to trivalent lanthanide co-dopants: Systematic behavior across the series
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Charge transfer from Eu2+ to trivalent lanthanide co-dopants: Systematic behavior across the series

机译:从EU2 +的电荷转移到三价镧系元素共掺杂剂:整个系列的系统行为

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摘要

Electron transfer processes between lanthanide activators are crucial for the functional behavior and performance of luminescent materials. Here, a multiconfigurational ab initio study reveals how direct metal-to-metal charge transfer (MMCT) between the Eu2+ luminescence activator and a Ln(3+) co-dopant (Ln(3+) = Ce3+, Pr3+, Nd3+, Pm3+, Sm3+, Eu3+, Gd3+, Tb3+, Dy3+, Ho3+, Er3+, Tm3+, and Yb3+) systematically dictates the luminescence and optical properties of CaF2. The combination of the structures and energies of the electronic manifolds, the vibrational force constants, and the structural properties of the donor and acceptor in the host determines the predictions of five different behaviors of CaF2:Eu2+, Ln(3+) co-doped materials after MMCT absorption: formation of stable traps, MMCT emission, emission quenching, Ln(3+) emission, and Eu2+ emission.
机译:稀土激活剂之间的电子转移过程对发光材料的功能行为和性能至关重要。在这里,多构型从头算研究揭示了Eu2+发光激活剂和Ln(3+)共掺杂剂(Ln(3+)=Ce3+、Pr3+、Nd3+、Pm3+、Sm3+、Eu3+、Gd3+、Tb3+、Dy3+、Ho3+、Er3+、Tm3+和Yb3+)之间的直接金属间电荷转移(MMCT)如何系统地决定CaF2的发光和光学性质。电子流形的结构和能量、振动力常数以及主体中施主和受主的结构特性的组合决定了CaF2:Eu2+、Ln(3+)共掺杂材料在MMCT吸收后的五种不同行为的预测:稳定陷阱的形成、MMCT发射、发射猝灭、Ln(3+)发射和Eu2+发射。

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