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Energy conversion systems: Molecular architecture engineering of metal precursors and their applications to vapor phase and solution routes

机译:能量转换系统:金属前体的分子建筑工程及其对气相和溶液途径的应用

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摘要

A careful engineering of the central metal coordination spheres provides adducts with excellent properties for application as precursors in vapor phase and solution processes. The family of precursors under study concerns the fluorinated metal-organic p-diketonates of alkaline, alkaline-earth and rare-earth metals adducted with a polyether, with general formula M(hfa)_n・L (M = Ca, Na, Y, Yb, Er, Tm; Hhfa = 1,1,1,5,5,5 hexafluoroacetylacetone, L = diglyme or tetraglyme). Mass transport properties, such as volatility and thermal stability, of these adducts have been deeply analyzed through thermogravimetric analysis and differential scanning calorimetric measurements. These properties are rationalized in relation to the metal coordination sphere in the precursors and their applications. In particular, the precursors under focus have been applied to metal organic chemical vapor deposition and a combined sol-gel/spin-coating approach. Both methods allow us to obtain selectively and reproducibly CaF_2 and NaYF_4 phases with several combinations of lanthanide doping ions, using a proper mixture of fluorinated precursors. A careful optimization of both synthetic strategies is the key point for the production of different lanthanide-doped binary and multicomponent fluoride films, i.e., CaF_2:Yb~(3+),Er~(3+); CaF_2:Yb~(3+),Tm~(3+); CaF_2: Yb~(3+),Er~(3+),Tm~(3+) and NaYF_4:Yb~(3+),Er~(3+); NaYF4:Yb~(3+),Tm~(3+), with suitable morphologies, compositions and crystalline structures. The films show very promising upconversion properties, thus pointing to their appealing applications in photovoltaic systems and white light emission devices.
机译:仔细的中央金属协调球的工程提供了具有优异性能的加合物作为气相中的前体和溶液过程。正在研究的前体系列涉及用聚醚加入的碱性,碱土和稀土金属的氟化金属 - 有机p-硫代酮,通式M(HFA)_N·L(m = Ca,Na,Y, YB,ER,TM; HHFA = 1,1,1,5,5,5,5六氟乙酰丙酮,L = DIGLYME或四面体)。通过热量分析和差示扫描量热测量,已经深入地分析了这些加合物的大规模运输性能,例如波动性和热稳定性。这些性质与前体及其应用中的金属配位球有关。特别地,焦点的前体已被应用于金属有机化学气相沉积和组合的溶胶 - 凝胶/旋涂方法。两种方法允许我们使用适当的氟化前体混合物获得具有几种组合的选择性和可重复的CAF_2和NayF_4阶段,使用氟化前体的适当混合物。对合成策略的仔细优化是生产不同镧系元素的二元和多组分氟膜的关键点,即Caf_2:Yb〜(3 +),ER〜(3+); CAF_2:YB〜(3+ ),TM〜(3+); CAF_2:YB〜(3 +),ER〜(3 +),TM〜(3+)和Nayf_4:YB〜(3 +),ER〜(3+); Nayf4: Yb〜(3 +),Tm〜(3+),具有合适的形态,组合物和晶体结构。薄膜显示出非常有前途的上转化性能,从而指着它们在光伏系统和白光发射装置中的吸引力应用。

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  • 来源
    《Journal of Materials Research》 |2020年第21期|2950-2966|共17页
  • 作者单位

    Dipartimento di Scienze Chimiche Universita di Catania and INSTM UdR Catania Catania 95125 Italy;

    Nanomaterials Research Group Dipartimento di Biotecnologie Universita di Verona and INSTM UdR Verona Verona 37134 Italy;

    Nanomaterials Research Group Dipartimento di Biotecnologie Universita di Verona and INSTM UdR Verona Verona 37134 Italy;

    Dipartimento di Scienze Chimiche Universita di Catania and INSTM UdR Catania Catania 95125 Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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