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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Cationic lanthanide complexes of neutral tripodal N,O ligands:enthalpy versus entropy-driven podate formation in water
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Cationic lanthanide complexes of neutral tripodal N,O ligands:enthalpy versus entropy-driven podate formation in water

机译:中性三脚架N,O配体的阳离子镧系元素络合物:水中的焓与熵驱动的荚膜形成

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The cationic lanthanide complexes of two neutral tripodal N,O ligands,tpa (tris[(2-pyridyl)methyl]amine) and tpaam (tris[6-((2-N,N-diethylcarbamoyl)pyridyl)methyl]amine) are studied in water.The analysis of the proton lanthanide induced NMR shifts indicate that there is no abrupt structural change in the middle of the rare-earth series.Unexpectedly,the formation constant values of the lanthanide podates of tpaam and tpa in D_2O at 298 K are similar,suggesting that the addition of the three amide groups to the ligand tpa does not lead to any increase in stability of the lanthanide complexes of tpaam in respect to tpa,even though the amide groups are coordinated to the metal in aqueous solution.The measurement of the enthalpy and entropy changes of the complexation reactions shows that the two similar ligands tpa and tpaam have different driving forces for lanthanide complexation.Indeed,the formation of tpa podates benefits from an exothermic enthalpy change associated with a small entropy change,whereas the complexation reaction with tpaam is clearly entropy-driven though opposed by a positive enthalpy change.The hydration states of the europium complexes were measured by luminescence and show the coordination of 4-5 water ligands in [Eu(tpa)]~(3+) whereas there are only 2 in [Eu(tpaam)]~(3+).Therefore the heptadentate ligand tpaam releases the translational entropy of more water molecules than does the tetradentate ligand tpa.
机译:两个中性三脚架N,O配体tpa(三[[(2-吡啶基)甲基]胺)和tpaam(三[6-((2-N,N-二乙基氨基甲酰基)吡啶基)甲基]胺的阳离子镧系元素络合物为质子镧系元素引起的NMR位移分析表明,稀土系列中部没有突然的结构变化。出乎意料的是,在298 K下D_2O中tpaam和tpa镧系元素的形成常数相似,表明将三个酰胺基团添加到配体tpa中不会导致tpaam镧系元素络合物相对于tpa的稳定性增加,即使酰胺基团在水溶液中与金属配位也是如此。络合反应的焓和熵变化的测量结果表明,两个相似的配体tpa和tpaam对镧系元素络合具有不同的驱动力。实际上,TPa掌形物的形成得益于放热焓变化和较小的内含物。 py变化,而与tpaam的络合反应显然是由熵驱动的,尽管与正焓变化相反。通过发光测量measured络合物的水合状态,并显示[Eu(tpa)]中4-5个水配体的配位〜(3+)而[Eu(tpaam)]〜(3+)中只有2。因此,七齿配体tpaam释放的水分子翻译熵比四齿配体tpa多。

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