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Nontrigonal constraint enhances 12-addition reactivity of phosphazenes

机译:非三角约束增强了磷腈的12-加成反应性

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摘要

The syntheses and 1,2-addition reactivities of nontrigonal phosphazenes supported by trianionic tricoordinating chelates of the type L3PNdipp (>3: L3 = N[CHC(tBu)O]23–; >4: L3 = N(o-NMeC6H4)23–; dipp = 2,6-diisopropylphenyl) are reported. These compounds are characterized by multinuclear NMR and single-crystal X-ray diffraction experiments. Distorted phosphazenes >3 and >4 are shown to add B–H, B–O, and Si–H bonds across the formal PN double bond, and their reactivities are contrasted with acyclic analogues. Derivatives of phosphazene >3 bearing sterically unencumbered N-substitutents readily dimerize to form the corresponding cyclodiphosphazanes; compounds with sterically demanding N-substituents are interconvertible between their monomeric and dimeric forms. The enhanced electrophilicity of the phosphorus center in nontrigonal phosphazenes >3 and >4 is rationalized by DFT calculations. Gas phase fluoride ion affinities are computed to be markedly higher for distorted phosphazenes, while proton affinities are largely unaffected by geometric distortion. These results are interpreted to suggest that distortion from pseudotetrahedral geometry results in stabilization of the P-based LUMO, while HOMO energies are essentially unchanged.
机译:L3P <!-private-char pc1-> Ndipp(> 3 :L3 = N [CHC(< sup> t Bu)O] 2 3 – ; > 4 :L3 = N(o-NMeC6H4)2 3 – ;报道了DPP = 2,6-二异丙基苯基)。这些化合物的特征在于多核NMR和单晶X射线衍射实验。已显示扭曲的磷腈> 3 和> 4 在正式P <!-private-char pc1--中添加了B–H,B–O和Si–H键> N双键,其反应性与无环类似物形成对比。带有空间上不受约束的N-取代基的磷腈> 3 的衍生物容易二聚形成相应的环二磷氮烷;具有空间要求的N-取代基的化合物可在其单体和二聚体形式之间互换。通过DFT计算合理化了非三角磷腈> 3 和> 4 中磷中心的增强亲电子性。气相氟离子亲和力经计算对于扭曲的磷腈显着更高,而质子亲和力在很大程度上不受几何变形的影响。解释这些结果表明,伪四面体几何形状的畸变导致P基LUMO的稳定,而HOMO能量基本不变。

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