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Investigation of Praseodymium Fluorides: A Combined Matrix-Isolation and Quantum-Chemical Study

机译:氟化Fluor的研究:基质分离和量子化学研究的结合

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摘要

The chemistry of the lanthanides is mostly dominated by compounds in the oxidation state +III. Only few compounds of Ce, Pr, and Tb are known with the metal in the +IV oxidation state. Removal of the last f-electron on praseodymium +IV would lead to a closed-shell system with formal oxidation state V. In this work we investigated the stability of the PrF5 molecule by theory and matrix-isolation techniques through the reaction of laser-ablated praseodymium atoms with fluorine in excess of neon, argon, krypton, or neat fluorine. Besides the known PrF3 molecule, unreported IR bands for PrF4 could be observed, and there is evidence for the formation of PrF and PrF2 but not for the formation of PrF5.
机译:镧系元素的化学性质主要由氧化态+ III的化合物决定。已知只有少数Ce,Pr和Tb化合物具有+ IV氧化态的金属。除去+ + IV上的最后一个f电子将导致具有正式氧化态V的闭壳系统。在这项工作中,我们通过理论和基质分离技术,通过激光烧蚀的反应,研究了PrF5分子的稳定性。 fluorine原子中的氟超过氖,氩,k或纯氟。除了已知的PrF3分子外,还可以观察到未报告的PrF4红外带,并且有形成PrF和PrF2的证据,但没有形成PrF5的证据。

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