首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Ligand dynamics and protonation preferences of Rh and Ir complexes bearing an almost, but not quite, pendent base
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Ligand dynamics and protonation preferences of Rh and Ir complexes bearing an almost, but not quite, pendent base

机译:RH和IR复合物的配体动力学和质子化偏好,轴承几乎,但不是完全,底座

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摘要

Pendent nucleophiles are essential partners in the cleavage and formation of bonds with hydrogen (e.g. protonation/deprotonation), but binding of the pendent group to the metal and the potential trapping of complexes in inactive states are a significant problem. The dipyridylmethane-based ligand framework bis (2-pyridyl)-N-pyrrolidinomethane ((CPy2)-C-R,pyr), bearing a hemilabile pyrrolidine moiety, has been synthesized and complexes of the type [((CPy2)-C-R,pyr) M(COD)]X (COD = 1,5-cyclooctadiene) were prepared. The solution-phase ligand dynamics and relative protonation preferences were investigated via H-1 NMR spectroscopy; although favorable, pendent amine binding does not kinetically inhibit pendent base protonation. Protonation at the metal (with concomitant pyrrolidine binding) has been found to be favorable for Ir, whereas N-protonation is favorable for Rh. DFT calculations predict that the Rh-III hydrides have much higher relative acidities than their Ir congeners (Delta pK(a) similar or equal to 7-8 in CH2Cl2), and are also more acidic than the strong acid [H(OEt2)(2)][B(C6F5)(4)].
机译:垂体亲核试剂是裂解中的基本伙伴和与氢的键(例如质子化/去质子化)形成,但沉膜组与金属的结合,并且在无活性状态下的络合物诱捕是一个重要问题。已经合成了携带血红素吡咯烷部分的双吡啶基甲烷的配体框架双(2-吡啶基)-N-吡咯烷基甲烷((CPY2)-CR,PYR),并[(((CPY2)-CR,PYR)复合物制备M(COD)] X(COD = 1,5-环辛二烯)。通过H-1 NMR光谱研究溶液相配体动力学和相对质子化偏好;虽然有利,悬垂的胺结合不会动力学抑制底层基质质子化。已经发现金属质原料(具有伴随的吡咯烷结合)是有利的,而N-质子化是有利的。 DFT计算预测RH-III氢化物的相对酸性远远高于其IR Congeners(在CH 2 Cl 2中类似或等于7-8的ΔPK(A)),并且比强酸更酸[H(OET2)( 2)] [B(C6F5)(4)]。

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