> Calcium fluoride represents one of the most efficient hosts for up‐conversion or down‐conversion emissions. A simple metal organic chemical vap'/> Nanostructured CaF <sub >2</sub>2 :Ln <sup >3+3+ (Ln <sup >3+3+ = Yb <sup >3+3+ /Er <sup >3+3+ , Yb <sup >3+3+ /Tm <sup >3+3+ ) Thin Films: MOCVD Fabrication and Their Upconversion Properties
首页> 外文期刊>Advanced materials interfaces >Nanostructured CaF 22 :Ln 3+3+ (Ln 3+3+ = Yb 3+3+ /Er 3+3+ , Yb 3+3+ /Tm 3+3+ ) Thin Films: MOCVD Fabrication and Their Upconversion Properties
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Nanostructured CaF 22 :Ln 3+3+ (Ln 3+3+ = Yb 3+3+ /Er 3+3+ , Yb 3+3+ /Tm 3+3+ ) Thin Films: MOCVD Fabrication and Their Upconversion Properties

机译:纳米结构CAF. 2 2 :ln。 <汤> 3 + 3+ (ln。 <汤> 3 + 3+ = yb。 <汤> 3 + 3+ /呃。 <汤> 3 + 3+ ,YB。 <汤> 3 + 3+ / Tm值。 <汤> 3 + 3+ )薄膜:Mocavd制造及其上转换性能

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> Calcium fluoride represents one of the most efficient hosts for up‐conversion or down‐conversion emissions. A simple metal organic chemical vapor deposition approach is applied to the fabrication of CaF 2 nanostructured thin films using the fluorinated “second‐generation” β‐diketonate compound Ca(hfa) 2 ?diglyme?H 2 O as a Ca‐F single‐source precursor. The versatility of the process is demonstrated for the fabrication of up‐converting Yb/Er or Yb/Tm codoped CaF 2 films on Si, quartz, and glass substrates. The Ln(hfa) 3 ?diglyme (Ln = Tm, Er, Yb) precursors are used as sources of the doping ions. Structural, morphological, and compositional characterization of the films shows the formation of polycrystalline CaF 2 films with a very uniform surface and suitable doping. In fact, an appropriate tuning of the mixture composition, i.e., the Ca:Ln ratio in the multicomponent source, permits the deposition of films with the desired stoichiometry. The films show promising up‐conversion properties in the visible and near infrared regions upon laser excitation for both doping mixtures.
机译: > 氟化钙代表最有效的颠倒转换或下转换排放的主体之一。将简单的金属有机化学气相沉积方法应用于CAF的制造 2 使用氟化“第二代”β-二酮化合物Ca(HFA)的纳米结构薄膜 2 ?DIGLYME?H 2 o作为CA-F单源前兆。该过程的多功能性用于制造上转换Yb / ER或YB / TM Compoped Caf 2 Si,石英和玻璃基板上的薄膜。 LN(HFA) 3 ?DIGLYME(LN = TM,ER,YB)前体用作掺杂离子的来源。薄膜的结构,形态学和组成表征显示了多晶CAF的形成 2 薄膜具有非常均匀的表面和合适的掺杂。实际上,在多组分源中的混合物组合物的适当调整,即Ca:Ln比,允许用所需的化学计量沉积薄膜。在激光激发掺杂混合物时,薄膜在可见和近红外区域中显示出令人欣赏的上升性质。

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