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Lanthanide-Induced Diinsertion of Isocyanates into the N-H Bond: Synthesis, Structure, and Reactivity of Organolanthanides Containing Diureido Ligands

机译:镧系元素引起的异氰酸酯向N-H键的二插入作用:含有双脲基配体的有机酚类化合物的合成,结构和反应性

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Treatment of [CP(2)LnNHPy](2) (Py = 2-pyridyl) (1) with 4-nitrophenyl isocyanate gives the unexpected complexes Cp(2)Ln[eta(2):eta(1)-PyNCON(C6H4NO2-4)CONHC6H4NO2-4] (Ln = Yb (5a), Er (5b)) as the main product regardless of the equivalency of isocyanate reagent employed. The more bulky isocyanate (2,6-(Pr2C6H3NCO)-Pr-i) also undergoes double insertion into 1, affording Cp(2)Ln[eta(2):eta(1)- PyNCON((C6H3Pr2)-Pr-i-2,6)(CONHC6H3Pr2)-Pr-i-2,6] (Ln = Yb (6a), Er (6b)). Reaction of 1 with 4 equiv of ClCH2CH2CH2NCO affords Cp(2)Ln[eta(2):eta(1)-PyNCON(CH2CH2CH2Cl)CONH(CH2)(3)Cl] (Ln = Yb (7a), Er (7b)) in good yields. Moreover, [(C5H4Me)(2)LnNHPy](2) (Ln = Yb (2a), Er (2b), Y (2c)) are also reactive toward isocyanate diinsertion, giving (C(5)H(4)Me(2)Ln[eta(2):eta(1)-PyNCON(Ph)CONHPh] (Ln = Yb (8a), Er (8b), Y (8c)) in almost quantitative yields. Furthermore, it is found that the presence of electron-withdrawing and electron-donating substituents on the pyridyl ring does not appear to alter the product selectivity and yields. The diinsertion of PhNCO into [Cp(2)LnNHPy(Me)](2) (Py-Me = 4-methyl-2-pyridyl) (3) and [CP(2)LnNHPy(Cl)](2) (Py-Cl = 5-chloro-2-pyridyl) (4) leads to the formation of Cp(2)Ln[eta(2)-eta(1)-(PyNCON)-N-Me(Ph)CONHPh] (Ln = Er (9a), Y (9b)) and Cp(2)Ln[eta(2):eta(1)-(PyNCON)-N-Cl(Ph)CONHP] (Ln = Yb (10a), Er (10b), Y (10c)), respectively. In addition, the monoinsertion intermediate Cp2Yb[eta(2)-N(Py)(CONHC6H3Pr2)-Pr-i-2,6](HMPA) (11 . HMPA) can be trapped during this diinsertion process by adding HMPA. Interestingly, the mixed diinsertion complex Cp2Yb[eta(2):eta(1)- PyNCON((C6H3Pr2)-Pr-i-2,6)CONHPh] (12) can be prepared by allowing 2,6-(Pr2C6H3NCO)-Pr-i to react first with PyNH2 and then With Cp3Yb followed by inserting with PhNCO or by the reaction of 11 with PhNCO. On the other hand, treatment of 6a with excess PhNCO leads to the replacement of 2,6-(Pr2C6H3NCO)-Pr-i units inserted into the N-H bond by PhNCO molecules, wherein the newly formed ligand has been structurally characterized in its protonated form PyNHCON(Ph)CONHPh (13). Similarly, PyNHCON((C6H3Pr2)-Pr-i-2,6)(CONHC6H3Pr2)-Pr-i-2,6 (14) could also be obtained by reaction of CP2Yb[PyNCON(Ph)CONHPh] with excess 2,6-(Pr2C6H3NCO)-Pr-i followed by hydrolysis. All the complexes were characterized by spectroscopic analysis. The structures of compounds 5-14 are also determined through X-ray single-crystal diffraction analysis.
机译:用4-硝基苯基异氰酸酯处理[CP(2)LnNHPy](2)(Py = 2-吡啶基)(1)得到意外的配合物Cp(2)Ln [eta(2):eta(1)-PyNCON(C6H4NO2) -4)CONHC6H4NO2-4](Ln = Yb(5a),Er(5b))为主要产物,与所用异氰酸酯试剂的当量无关。更大体积的异氰酸酯(2,6-(Pr2C6H3NCO)-Pr-i)也经历两次插入1,从而获得Cp(2)Ln [eta(2):eta(1)-PyNCON((C6H3Pr2)-Pr-i -2,6)(CONHC6H3Pr2)-Pr-i-2,6](Ln = Yb(6a),Er(6b))。 1与4当量的ClCH2CH2CH2NCO反应得到Cp(2)Ln [eta(2):eta(1)-PyNCON(CH2CH2CH2Cl)CONH(CH2)(3)Cl](Ln = Yb(7a),Er(7b) ),收益率很高。此外,[(C5H4Me)(2)LnNHPy](2)(Ln = Yb(2a),Er(2b),Y(2c))对异氰酸酯双插入也是反应性的,得到(C(5)H(4)Me (2)Ln [eta(2):eta(1)-PyNCON(Ph)CONHPh](Ln = Yb(8a),Er(8b),Y(8c))几乎是定量的产率。在吡啶基环上存在吸电子和供电子取代基似乎并没有改变产物的选择性和产率。PhNCO插入[Cp(2)LnNHPy(Me)](2)(Py-Me = 4 -甲基-2-吡啶基)(3)和[CP(2)LnNHPy(Cl)](2)(Py-Cl = 5-氯-2-吡啶基)(4)导致Cp(2)Ln的形成[eta(2)-eta(1)-(PyNCON)-N-Me(Ph)CONHPh](Ln = Er(9a),Y(9b))和Cp(2)Ln [eta(2):eta( 1)-(PyNCON)-N-Cl(Ph)CONHP](Ln = Yb(10a),Er(10b),Y(10c)),此外,单插入中间体Cp2Yb [eta(2)-N (Py)(CONHC6H3Pr2)-Pr-i-2,6](HMPA)(11。HMPA)在此插入过程中可以通过添加HMPA来捕获。有趣的是,混合的插入物复合物Cp2Yb [eta(2):eta(1 )-PyNCON((C6H3P r2)-Pr-i-2,6)CONHPh](12)可以通过使2,6-(Pr2C6H3NCO)-Pr-i首先与PyNH2反应,然后与Cp3Yb反应,然后与PhNCO插入或通过反应来制备与PhNCO共11个。另一方面,用过量的PhNCO处理6a会导致PhNCO分子取代插入NH键中的2,6-(Pr2C6H3NCO)-Pr-i单元,其中新形成的配体在结构上以质子化形式表征PyNHCON(Ph)CONHPh(13)。同样,也可以通过CP2Yb [PyNCON(Ph)CONHPh]与过量2,6的反应获得PyNHCON((C6H3Pr2)-Pr-i-2,6)(CONHC6H3Pr2)-Pr-i-2,6(14) -(Pr 2 C 6 H 3 NCO)-Pr-i,然后水解。所有配合物均通过光谱分析表征。化合物5-14的结构也通过X射线单晶衍射分析确定。

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