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Synthesis of hydroxo-bridged Dy(III) dimers supported by crown ethers through C-H activation and oxygen-atom transfer
Ziyi Gu1,2, Jun Li1,3, Xuan Zhang1,3
1State Key Laboratory of Thorium Energy, Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China. liyangjuan@sinap.ac.cn.
Abstract:
Me3NO is well known for undergoing an oxygen-atom transfer reaction, while the C-H activation of Me3NO with organometallic complexes is far less explored. Herein, we report the synthesis and characterization of two hydroxo-bridged dinuclear complexes [Dy(12-crown-4)(µ-OH)(CH3CN)I]2I2(CH3CN)2 (3) and [Dy(15-crown-5)(µ-OH)(CH3CN)]2I4 (4), which were formed by the reactions of different crown ether supported complexes [Dy(12-crown-4)2(CH3CN)]I3 (1) and [Dy(15-crown-5)(CH3CN)2I]I2 (2) with Me3NO, respectively. The observation of bridging hydroxo groups in complexes 3 and 4 indicates that Me3NO underwent C-H activation along with OAT during the reactions. In contrast, the reactions of 1 and 2 with H2O led to two hydrated adducts [Dy(12-crown-4)2(H2O)](CH3CN)3I3 (5) and [Dy(15-crown-5)(CH3CN)2(H2O)]I3 (6), respectively.
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