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Generally, an acetate ion behaves as a bridging ligand for lanthanide ions, and more than 400 acetate-bridged lanthanide complexes have been reported in the Cambridge Crystallographic Database. In contrast, nitrate ions rarely behave as a bridging ligand for lanthanide ions (ca. 20 compounds have been reported), and nitrate ions can behave as a terminating ligand for lanthanide cluster growth.
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Generally, an acetate ion behaves as a bridging ligand for lanthanide ions, and more than 400 acetate-bridged lanthanide complexes have been reported in the Cambridge Crystallographic Database. In contrast, nitrate ions rarely behave as a bridging ligand for lanthanide ions (ca. 20 compounds have been reported), and nitrate ions can behave as a terminating ligand for lanthanide cluster growth.
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0, etc., should be included in magnetic analysis of rare-earth compounds in less-symmetrical coordination environments. However, it appeared that the magnetic susceptibility of the present complex was fortunately reproducible by considering only D, which should be assumed as an effective anisotropic parameter and might include the contributions from the higher terms, partly owing to the statistical property of thermodynamic quantities.
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0, etc., should be included in magnetic analysis of rare-earth compounds in less-symmetrical coordination environments. However, it appeared that the magnetic susceptibility of the present complex was fortunately reproducible by considering only D, which should be assumed as an effective anisotropic parameter and might include the contributions from the higher terms, partly owing to the statistical property of thermodynamic quantities.
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