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Ionic core-shell dendrimers with an octacationic core as noncovalent supports for homogeneous catalysts

机译:具有八阳离子核的离子核-壳树状聚合物,作为均相催化剂的非共价载体

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Ionic core-shell dendrimers with an octacationic core have been applied as noncovalent supports for homogeneous catalysts. Catalytically active arylpalladium complexes, which bear a tethered sulfato group, were noncovalently attached to the ionic core-shell dendritic supports via a straightforward ionexchange reaction under mild conditions. Diagnostic shifts in H-1 NMR and Overhauser contacts show that the sulfato groups of the catalysts are located close to the octacationic core of the dendritic support in the resulting assemblies. The location of the catalytic Pd(II) sites has been varied via two strategies: by increasing the dendrimer generation and/or by shortening of the sulfato tether. In addition, a metallodendritic assembly was prepared, which bears an alternative shell of apolar dodecyl groups. Both the dendrimer size and the nature of the dendritic shell have no influence on the binding properties of the dendritic supports, i.e., the octacationic dendrimers of generations 1-3 form discrete 1: 8 assemblies with the arylpalladium complexes. The structural aspects and the nature of the metallodendritic assemblies have been studied by means of pulse gradient spin-echo NMR diffusion methods, Overhauser spectroscopy, and electron microscopy (TEM). These techniques showed that the dendritic supports and arylpalladium complexes are strongly associated in solution to give unimolecular assemblies of nanoscopic dimensions. Membrane dialysis can recover these metallodendritic assemblies due to their nanoscopic size. The catalytic performances of the metallodendritic assemblies are comparable, but slightly lower than the performance of the unsupported catalyst.
机译:具有八阳离子核的离子核-壳树状大分子已被用作均相催化剂的非共价载体。带有束缚的硫酸根基团的催化活性芳基钯配合物在温和的条件下通过直接的离子交换反应非共价结合到离子核-壳树突状载体上。 H-1 NMR和Overhauser接触的诊断变化表明,催化剂的硫酸根基团在所得组装物中的位置接近树枝状载体的八酸核。催化Pd(II)位点的位置已通过两种策略进行了更改:通过增加树状聚合物的生成和/或通过缩短硫酸根系链。另外,制备了具有非极性十二烷基的另一壳的金属树枝状组装体。树枝状聚合物的大小和树枝状壳的性质均不影响树枝状载体的结合性能,即1-3代的八阳离子树枝状聚合物与芳基钯配合物形成离散的1∶8组装体。已经通过脉冲梯度自旋回波NMR扩散方法,Overhauser光谱学和电子显微镜(TEM)研究了金属枝晶组件的结构和性质。这些技术表明,树枝状载体和芳基钯络合物在溶液中牢固缔合,从而形成纳米级的单分子组装体。膜透析可以回收这些金属树枝状组件,因为它们具有纳米尺寸。所述金属树枝状组件的催化性能是可比较的,但是比未负载的催化剂的性能稍低。

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