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五烯基配合物的合成与稀土金属的分子结构。

Synthesis and molecular structure of pentadienyl complexes of the rare-earth metals.

机构信息

Technische Universität Braunschweig, Institut für Anorganische und Analytische Chemie, Hagenring 30, 38106 Braunschweig, Germany.

出版信息

Dalton Trans. 2018 Oct 23;47(41):14468-14482. doi: 10.1039/c8dt03123a.

Abstract

The coordination chemistry of the sterically encumbered pentadienyl ligand pdl' (pdl' = 2,4-(Me3C)2C5H5) towards a series of rare-earth metals was systematically explored and the resulting metal complexes were fully characterized by several techniques including X-ray diffraction, elemental analysis, NMR spectroscopy and solid-state magnetic susceptibility studies. Three different reaction products were isolated depending on the redox-potentials and ionic radii of the metal atoms. They can be classified as (a) salt-metathesis, (b) metal reduction-ligand oxidation and (c) ligand deprotonation products. While for the larger and difficult to reduce metal ions, M = La, Ce, Pr and Nd, trivalent compounds [(η5-pdl')3M] (1-M) were isolated, for the more readily reduced metal ions the corresponding divalent compounds [[(η5-pdl')2M(thf)n] (2-M; with M = Sm (n = 2); Eu, Yb (n = 1)) were formed. A more complex structural motif was observed for the smaller and also difficult to reduce metal ions, M = Sc, Y, Gd, Tb, Dy, Ho, Er, Tm and Lu, which yielded the bimetallic complexes of the type [(pdl')(pdl'-1H)(pdl'-2H)M2(thf)2] (3-M). In these dimeric complexes the pdl' ligand acts as a result of deprotonation reactions not only as a monoanionic [pdl']-, but also as a dianionic [pdl'-1H]2- and a trianionic [pdl'-2H]3- ligand scaffold, which form unusual structural motifs including a six-membered metallacycle. Solid-state magnetic susceptibility studies revealed the expected free-ion magnetic moments at T = 300 K for all investigated compounds, whereas at lower temperatures crystal-field effects dominate. Furthermore, for 3-Gd, 3-Tb, 3-Dy and 3-Er weak ferromagnetic exchange interactions were observed at low temperature.

摘要

该 sterically 受阻的戊二烯基配体 pdl'(pdl'= 2,4-(Me3C)2C5H5)与一系列稀土金属的配位化学得到了系统的研究,所得金属配合物通过多种技术进行了充分的表征,包括 X 射线衍射、元素分析、NMR 光谱和固态磁化率研究。根据金属原子的氧化还原电位和离子半径,分离出三种不同的反应产物。它们可以分为(a)盐交换,(b)金属还原-配体氧化和(c)配体去质子化产物。对于较大且难以还原的金属离子,M = La、Ce、Pr 和 Nd,分离出三价化合物[(η5-pdl')3M](1-M),对于更易还原的金属离子,相应的二价化合物[[(η5-pdl')2M(thf)n](2-M;M = Sm(n = 2);Eu、Yb(n = 1))形成。对于较小且难以还原的金属离子,M = Sc、Y、Gd、Tb、Dy、Ho、Er、Tm 和 Lu,观察到更复杂的结构模式,形成了类型为[(pdl')(pdl'-1H)(pdl'-2H)M2(thf)2](3-M)的双金属配合物。在这些二聚体配合物中,pdl'配体通过去质子化反应不仅作为单价阴离子[pdl']-,而且作为二价阴离子[pdl'-1H]2-和三价阴离子[pdl'-2H]3-配体支架,形成了包括六元金属环在内的不寻常结构模式。固态磁化率研究表明,所有研究化合物在 T = 300 K 时均具有预期的自由离子磁矩,而在较低温度下,晶体场效应占主导地位。此外,在 3-Gd、3-Tb、3-Dy 和 3-Er 中,在低温下观察到弱铁磁交换相互作用。

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