首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Exploring Lanthanide Doping in UiO-66: A Combined Experimental and Computational Study of the Electronic Structure
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Exploring Lanthanide Doping in UiO-66: A Combined Experimental and Computational Study of the Electronic Structure

机译:探索UIO-66中的镧系掺杂:电子结构的组合实验和计算研究

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摘要

Lanthanide-based metal–organic frameworks show very limited stabilities, which impedes their use in applications exploiting their extraordinary electronic properties, such as luminescence and photocatalysis. This study demonstrates a fast and easy microwave procedure to dope UiO-66, an exceptionally stable and tunable Zr-based metal–organic framework. The generally applicable synthesis methodology is used to incorporate different transition metal and lanthanide ions. Selected experiments on these newly synthesized materials allow us to construct an energy scheme of lanthanide energy levels with respect to the UiO-66 host. The model is confirmed via absolute intensity measurements and provides an intuitive way to understand charge transfer mechanisms in these doped UiO-66 materials. Density functional theory calculations on a subset of materials moreover improve our understanding of the electronic changes in doped UiO-66 and corroborate our empirical model.
机译:基于镧系元素 - 有机框架显示出非常有限的稳定性,这阻碍了他们在利用其非凡的电子性质的应用中使用,例如发光和光催化。 本研究证明了一种快速且易于微波的步骤,适用于DOPE UIO-66,具有异常稳定和可调的ZR基金属框架。 通常适用的合成方法用于掺入不同的过渡金属和镧系元素。 这些新合成材料的所选实验允许我们相对于UIO-66宿主构建镧系元素能量水平的能量方案。 该模型通过绝对强度测量确认,并提供了理解这些掺杂UIO-66材料中的电荷转移机制的直观方式。 密度函数理论计算材料子集的计算从而改善了我们对掺杂UIO-66的电子变化的理解,并证实了我们的经验模型。

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