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立体效应对铀酰络合的影响:铀酰(VI)离子的氨甲酰吡唑化合物的合成、结构和理论研究。

Steric effects on uranyl complexation: synthetic, structural, and theoretical studies of carbamoyl pyrazole compounds of the uranyl(VI) ion.

机构信息

Fuel Reprocessing Division, Bhabha Atomic Research Centre, Mumbai-400085, India.

出版信息

Inorg Chem. 2012 Apr 16;51(8):4869-76. doi: 10.1021/ic300398a. Epub 2012 Apr 3.

Abstract

New bifunctional pyrazole based ligands of the type [C(3)HR(2)N(2)CONR'] (where R = H or CH(3); R' = CH(3), C(2)H(5), or (i)C(3)H(7)) were prepared and characterized. The coordination chemistry of these ligands with uranyl nitrate and uranyl bis(dibenzoyl methanate) was studied with infrared (IR), (1)H NMR, electrospray-mass spectrometry (ES-MS), elemental analysis, and single crystal X-ray diffraction methods. The structure of compound [UO(2)(NO(3))(2)(C(3)H(3)N(2)CON{C(2)H(5)}(2))] (2) shows that the uranium(VI) ion is surrounded by one nitrogen atom and seven oxygen atoms in a hexagonal bipyramidal geometry with the ligand acting as a bidentate chelating ligand and bonds through both the carbamoyl oxygen and pyrazolyl nitrogen atoms. In the structure of [UO(2)(NO(3))(2)(H(2)O)(2)(C(5)H(7)N(2)CON {C(2)H(5)}(2))(2)], (5) the pyrazole ligand acts as a second sphere ligand and hydrogen bonds to the water molecules through carbamoyl oxygen and pyrazolyl nitrogen atoms. The structure of [UO(2)(DBM)(2)C(3)H(3)N(2)CON{C(2)H(5)}(2)] (8) (where DBM = C(6)H(5)COCHCOC(6)H(5)) shows that the pyrazole ligand acts as a monodentate ligand and bonds through the carbamoyl oxygen to the uranyl group. The ES-MS spectra of 2 and 8 show that the ligand is similarly bonded to the metal ion in solution. Ab initio quantum chemical studies show that the steric effect plays the key role in complexation behavior.

摘要

新型双功能吡唑基配体 [C(3)HR(2)N(2)CONR'](其中 R = H 或 CH(3);R' = CH(3)、C(2)H(5) 或(i)C(3)H(7))被制备并进行了表征。通过红外光谱(IR)、(1)H NMR、电喷雾质谱(ES-MS)、元素分析和单晶 X 射线衍射方法研究了这些配体与硝酸铀酰和双(二苯甲酰甲烷)铀酰的配位化学。化合物 [UO(2)(NO(3))(2)(C(3)H(3)N(2)CON{C(2)H(5)}(2))](2)的结构表明,铀(VI)离子被一个氮原子和七个氧原子包围,形成一个六方双锥几何形状,其中配体作为双齿螯合配体,通过氨甲酰氧和吡唑基氮原子键合。在 [UO(2)(NO(3))(2)(H(2)O)(2)(C(5)H(7)N(2)CON{C(2)H(5)}(2))(2)](5)的结构中,吡唑配体作为第二球配体,并通过氨甲酰氧和吡唑基氮原子与水分子形成氢键。[UO(2)(DBM)(2)C(3)H(3)N(2)CON{C(2)H(5)}(2)](8)(其中 DBM = C(6)H(5)COCHCOC(6)H(5))的结构表明,吡唑配体作为单齿配体,通过氨甲酰氧与铀酰基团键合。2 和 8 的 ES-MS 谱表明,配体在溶液中与金属离子的键合方式相似。从头算量子化学研究表明,空间位阻效应在配合物行为中起着关键作用。

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