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贫化铀配合物:π配位在稳定正低价态铀物种中的作用的合成与密度泛函理论研究

Reduced uranium complexes: synthetic and DFT study of the role of pi ligation in the stabilization of uranium species in a formal low-valent state.

作者信息

Korobkov Ilia, Gorelsky Serge, Gambarotta Sandro

机构信息

Department of Chemistry, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada.

出版信息

J Am Chem Soc. 2009 Aug 5;131(30):10406-20. doi: 10.1021/ja9002525.

Abstract

Reaction of UCl(4)(THF)(4) with 1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(4)Li(2) produced a complex formulated as [{1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(4)}UCl(3)][Li(THF)(4)] (1) that exhibits a nonagostic interaction between one of the carbon atoms of the central phenyl ring and the U metal center. This interaction leads to significant weakening of the corresponding C-H bond, thereby facilitating proton removal in consecutive transformations. Attempts to form trivalent uranium derivatives were carried out by reacting the same ligand dianion with in situ-prepared "UCl(3)". The reaction indeed afforded a trivalent species formulated as {1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(4)}U(mu-Cl)(3)Li(THF)(2) (2). The configuration of the ligand system in this complex is similar to that in 1, with the same type of arrangement of the central phenyl ring. Further reduction chemistry with a variety of reagents and conditions was examined. Reaction of 1 with 1 equiv of lithium naphthalenide at 0 degrees C did not afford 2 but instead gave a closely related U(III) complex formulated as {1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(4)}U(THF)(mu-Cl)(2)[Li(Et(2)O)(2)] (3). Both of the trivalent complexes 2 and 3 reacted thermally in boiling THF, undergoing oxidation of the metal center to afford a new tetravalent compound {1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(3)}U(THF)(mu-Cl)(2)[Li(THF)(2)] (4) in which the oxidation of the trivalent center occurred at the expense of the central phenyl ring C-H bond. Reaction of 1 with 3 equiv of lithium naphthalenide at room temperature afforded {{1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(3)}U(mu-Cl)(mu-[O(CH(2))(3)CH(2)])[Li(DME)]}[Li(DME)(3)] (5). In this species, the tetravalent metal center forms a six-membered metallacycle ring with a moiety arising from THF ring opening. Reaction in DME afforded reductive cleavage of the solvent accompanied by reoxidation of U to the tetravalent state. Reduction of 1 in DME with 2 equiv of potassium naphthalenide at room temperature gave a mixture of two compounds having very similar structures. The two different species [{1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(3)}UCl(OCH(3))][Li(DME)(3)] (6a) and [{1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(3)}UCl(2)][Li(DME)(3)] (6b) cocrystallized in a ratio very close to 1:1 within the same unit cell. The methoxide group was generated from cleavage of the DME solvent. We also attempted the reduction of 1 with a different reducing agent such as NaH in DME. After a slow reaction, a new species formulated as {1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(3)}U(mu-OCH(3))(3)(mu,eta(6)-Na)[eta(3)-Na(DME)] (7) was isolated in significant yield. Once again, the crystal structure revealed the presence of several methoxy groups coordinated to the U center in addition to the metalation of the ligand phenyl ring. To minimize solvent cleavage, reduction of 1 was also carried out at low temperature (-35 degrees C) and with a larger amount (4 equiv) of lithium naphthalenide. After suitable workup, the new species {[{1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(3)}U{1,3-2,5-(i-Pr)(2)PhN horizontal lineC(CH(3))C(6)H(4)}][Li(DME)(THF)]}.Et(2)O (8) was isolated in significant yield. Even in this case, the uranium atom is surrounded by the expected trianionic, ring-metalated ligand. However, a second ligand unit surrounds the metal center, being bonded through a part of the pi system. Reaction of 1 with excess NaH in toluene proceeded slowly at room temperature, affording a significant yield of {[{1,3-2,5-(i-Pr)(2)PhNC( horizontal lineCH(2))C(6)H(3)}U{1,3-2,5-(i-Pr)(2)PhN horizontal lineC(CH(3))C(6)H(4)}{Na(DME)(2)}][Na(DME)(3)]}.(1)/(2)C(7)H(8) (9) after crystallization from DME/toluene. Similar to 8, the complex still contains one ring-metalated trianionic ligand and one intact ligand that has regained the H atoms and restored the two imine functions. Although according to their connectivities, complexes 8 and 9 could be assigned with the formal oxidation states +2 and +1, respectively, density functional theory calculations clearly indicated that these species contain additional spin density on the ligand system with the metal center in its more standard trivalent state.

摘要

UCl₄(THF)₄与1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₄Li₂反应生成了一种配合物,其化学式为[{1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₄}UCl₃][Li(THF)₄] (1),该配合物在中心苯环的一个碳原子与U金属中心之间存在一种非经典相互作用。这种相互作用导致相应C - H键显著弱化,从而便于在后续转化中脱去质子。通过使相同的配体二价阴离子与原位制备的“UCl₃”反应来尝试形成三价铀衍生物。该反应确实得到了一种三价物种,化学式为{1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₄}U(μ - Cl)₃[Li(THF)₂]₂ (2)。该配合物中配体体系的构型与1中的相似,中心苯环具有相同类型的排列方式。研究了在各种试剂和条件下的进一步还原化学。1与1当量的萘锂在0℃反应未得到2,而是得到了一种密切相关的U(III)配合物,化学式为{1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₄}U(THF)(μ - Cl)₂[Li(Et₂O)₂] (3)。三价配合物2和3在沸腾的THF中均发生热反应,金属中心被氧化,得到一种新的四价化合物{1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₃}U(THF)(μ - Cl)₂[Li(THF)₂] (4),其中三价中心的氧化是以中心苯环的C - H键为代价的。1与3当量的萘锂在室温下反应得到{{1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₃}U(μ - Cl)(μ - [O(CH₂)₃CH₂])[Li(DME)]}[Li(DME)₃] (5)。在该物种中,四价金属中心与一个由THF开环产生的部分形成了一个六元金属环。在DME中反应导致溶剂发生还原裂解,同时U被再氧化为四价态。在室温下用2当量的萘钾在DME中还原1得到了两种结构非常相似的化合物的混合物。两种不同的物种[{1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₃}UCl(OCH₃)][Li(DME)₃] (6a)和[{1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₃}UCl₂][Li(DME)₃] (6b)在同一晶胞中以非常接近1:1的比例共结晶。甲氧基是由DME溶剂裂解产生的。我们还尝试用不同的还原剂如NaH在DME中还原1。经过缓慢反应后,以较高产率分离得到了一种新的物种,化学式为{1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₃}U(μ - OCH₃)₃(μ,η⁶ - Na)[η³ - Na(DME)] (7)。晶体结构再次表明,除了配体苯环的金属化外,还有几个甲氧基与U中心配位。为了尽量减少溶剂裂解,还在低温(-35℃)下用过量(4当量)的萘锂对1进行还原。经过适当处理后,以较高产率分离得到了新的物种{[{1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₃}U{1,3 - [2,5 - (i - Pr)₂PhN═C(CH₃)]₂C₆H₄}][Li(DME)(THF)]}.Et₂O (8)。即使在这种情况下,铀原子也被预期的三价阴离子、环金属化配体所包围。然而,第二个配体单元围绕着金属中心,通过π体系的一部分与之相连。1与过量的NaH在甲苯中于室温下反应进行缓慢,从DME/甲苯中结晶后得到了较高产率的{[{1,3 - [2,5 - (i - Pr)₂PhNC(═CH₂)]₂C₆H₃}U{1,3 - [2,5 - (i - Pr)₂PhN═C(CH₃)]₂C₆H₄}{Na(DME)₂}][Na(DME)₃]}.(1)/(2)C₇H₈ (9)。与8类似,该配合物仍然包含一个环金属化的三价阴离子配体和一个完整的配体,该配体重新获得了H原子并恢复了两个亚胺官能团。尽管根据它们的连接性,配合物8和9可以分别被指定为形式氧化态+2和+1,但密度泛函理论计算清楚地表明,这些物种在配体体系上含有额外的自旋密度,金属中心处于其更标准的三价态。

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