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Synthesis and Reactivity of Nickel an Palladium Fluoride Complexes with PCP Pincer Ligands. A NMR-Based Assessment of Electron-Donating Properties of Fluoride and Other Monoanionic Ligands

机译:镍和氟化钯与PCP钳形配体的合成及反应活性。基于核磁共振的氟化物和其他单阴离子配体的电子定性性能评估

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摘要

A series of complexes of the type [(iPrPCP)M-L] (IM = Ni, Pd), containing the 2,6-bis(diisopropylphosphiomethyl)phenyl (PrPCP) pincer ligand and simple monoanionic ligands L (F, Cl, Br, H, Me, Ph, NO3 and OTf) have been synthesized and characterized. The fluoride derivatives [(iPrPCP)M-F] were prepared from the halides [(iPrPCP)M-X] (M = Ni, X = Br; M= Pd, X = Cl) by exchange reactions with AgF or, alternatively, by protonolysis of the methyl complexes [(iPrPCP)M-Me] with Et3N•3HF (TREAT-HF). A survey of the 13C NMR data for the new complexes and previously reported ones with L = OH, OMe and NH2 revealed significant trends that can be directly related to the electronic properties of the anionic ligands L coordinated to Ni(II) and Pd(II) centers. The chemical shift of the 13C resonance of the metal-bound (ipso) is very sensitive to the -donating capacity of L, which increases in the order L = OTf > NO3 > F > OAc > OMe > Cl > OH ≈ Br > I > NH2 > Ph > Me > H. In addition, the reactivity of [(iPrPCP)M-F] complexes was investigated. These readily undergo fluoride exchange with LiOMe, affording the corresponding methoxides [(iPrPCP)M-OMe] and LiF. They also react with n-C12H13I to cleanly yield [(iPrPCP)M-I] and n-C12H13F. Comparison of the rates of the latter reactions and analogous ones involving bromide or chloride complexes showed that the fluorides are significantly more nucleophilic, particularly the palladium derivative. This property was applied in a palladium-catalyzed reaction for the synthesis of alkyl fluorides using AgF as the fluoride source
机译:[[iPrPCP)ML]类型的一系列配合物(IM = Ni,Pd),包含2,6-双(二异丙基磷甲基)苯基(PrPCP)钳形配体和简单的单阴离子配体L(F,Cl,Br,H ,Me,Ph,NO3和OTf)已经合成并表征。氟化物衍生物[(iPrPCP)MF]是由卤化物[(iPrPCP)MX](M = Ni,X = Br; M = Pd,X = Cl)通过与AgF交换反应或通过质子分解而制得的。甲基络合物[(iPrPCP)M-Me]与Et3N•3HF(TREAT-HF)。对新配合物和先前报道的L = OH,OMe和NH2的13C NMR数据的调查显示,显着趋势可能与与Ni(II)和Pd(II)配位的阴离子配体L的电子性质直接相关。 )中心。与金属结合的(ipso)的13C共振的化学位移对L的don供体能力非常敏感,其按以下顺序增加:L = OTf> NO3> F> OAc> OMe> Cl> OH≈Br> I> NH2> Ph> Me>H。此外,研究了[(iPrPCP)MF]配合物的反应性。它们容易与LiOMe进行氟化物交换,得到相应的甲醇盐[(iPrPCP)M-OMe]和LiF。它们还与n-C12H13I反应生成[[iPrPCP)M-1]和n-C12H13F。比较后面的反应速率和涉及溴化物或氯化物络合物的类似反应速率,发现氟化物明显更亲核,特别是钯衍生物。该性质适用于以AgF为氟化物源的钯催化合成烷基氟化物的反应

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