2023
DOI: 10.1021/acs.inorgchem.2c03872
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Heterometallic 3d–4f Alkoxide Precursors for the Synthesis of Binary Oxide Nanomaterials

Abstract: In this study, a new method for the synthesis of heterometallic 3d–4f alkoxides by the direct reaction of metallic lanthanides (La, Pr, Nd, Gd) with MCl2 (M = Mn, Ni, Co) in 2-methoxyethanol was developed. The method was applied to the synthesis of the heterometallic oxo-alkoxide clusters [Ln4Mn2(μ6-O)­(μ3-OR)8­(HOR) x Cl6] (Ln = La (1), Nd (2), Gd (3); x = 0, 2, 4); [Pr4M2(μ6-O)(μ3-OR)8(HOR) x Cl6] (M = Co (4), Ni (5); x = 2, 4); and [Ln4Mn2(μ3-OH)2(μ3-OR)4­(μ-OR)4(μ-Cl)2­(HOR)4Cl6] (Ln = La (11) and Pr (12))… Show more

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Cited by 6 publications
(2 citation statements)
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References 111 publications
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“…Recently Sobota and coworkers reported the synthesis of heterometallic oxo-alkoxides by the reaction of metallic lanthanides with divalent transition metal chlorides MCl2 (M II = Mn II , Ni II or Co II ) or group 4 metallocene dichlorides Cp2MCl2 (where M IV = Ti IV , Zr IV , Hf IV ), using 2-methoxy ethanol or ethanol as solvents and reagents [30,31]. The reaction of RECl3 with the molar excess of alkaline or alkaline earth ligand precursors is used as the main method for synthesizing heterometallic rare earth -group 1/group 2 complexes [32,33].…”
Section: Synthesis Routesmentioning
confidence: 99%
“…Recently Sobota and coworkers reported the synthesis of heterometallic oxo-alkoxides by the reaction of metallic lanthanides with divalent transition metal chlorides MCl2 (M II = Mn II , Ni II or Co II ) or group 4 metallocene dichlorides Cp2MCl2 (where M IV = Ti IV , Zr IV , Hf IV ), using 2-methoxy ethanol or ethanol as solvents and reagents [30,31]. The reaction of RECl3 with the molar excess of alkaline or alkaline earth ligand precursors is used as the main method for synthesizing heterometallic rare earth -group 1/group 2 complexes [32,33].…”
Section: Synthesis Routesmentioning
confidence: 99%
“…[21] Recently, there has been a significant surge of interest in the synthesis of heterometallic 3d-4f compounds due to their potential to exhibit distinctive luminescent and magnetic properties. [22][23][24][25] Moreover, 3d-4f clusters, serving as secondary building units, often exhibit remarkably versatile and irregular coordination numbers and geometries. These properties always cause the diverse structural variations observed in their compounds.…”
Section: Introductionmentioning
confidence: 99%