溶剂
化学
金属
各向同性
材料科学
分析化学(期刊)
有机化学
物理
量子力学
作者
Marcus Rauche,Sebastian Ehrling,Leila Abylgazina,Christopher Bachetzky,Irena Senkovska,Stefan Kaskel,Eike Brunner
标识
DOI:10.1016/j.ssnmr.2022.101809
摘要
Within the present contribution, we describe solid-state NMR spectroscopic studies of the paddle wheel unit in the prototypic flexible MOF compound DUT-8(M) (M = Ni, Co, Zn). The 13C NMR chemical shift of these carboxylates shows a remarkable behavior. The pure 2,6-H2ndc linker carboxylates as well as DUT-8(Zn) exhibit a13C chemical shift of only about 170 ppm. In contrast, much higher values are observed for DUT-8(Ni) and especially DUT-8(Co). In the open pore state, the shift strongly depends on the solvent polarity in these two latter cases. The present contribution elucidates the reason for this solvent influence. It is concluded that the solvent mainly modifies the isotropic Fermi contact coupling constant for the excited high-spin states in DUT-8(Ni) and DUT-8(Co).
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