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Site-specific installation and study of electroactive units in every layer of dendrons

机译:在树枝状结构的每一层中针对特定地点安装和研究电活性单元

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(Graph Presented) Whereas encapsulation of functional groups at the core of dendrimers is well-understood, very little is known about their intermediate layers or even the periphery. Here we report on a systematic investigation of every layer of dendrimers by incorporating a single ferrocene unit in well-defined locations in dendrons. Site-specific incorporation of the ferrocene unit was achieved by utilizing the dendrimer sequencing methodology. We show here that the redox potential values of ferrocene at intermediate layers were remarkably different from those at the core and the periphery. Although redox potential values were location-dependent, no significant change in the rate of heterogeneous electron transfer (k_0) was observed with respect to locations. This was attributed to the possibility that free rotation of dendrimer nullifies the distance between the electrode and ferrocene unit. Finally, we also show that no Faradaic current was observed for the amphiphilic assemblies of these dendrons, whereas the same dendron did exhibit significant Faradaic current in nonassembling solvent environments.
机译:(显示的图形)虽然对树枝状聚合物核心的官能团的封装是很容易理解的,但对它们的中间层甚至外围的了解却很少。在这里,我们通过在树突中定义明确的位置合并一个二茂铁单元,对树状聚合物每一层进行系统研究。二茂铁单元的位点特异性结合是通过利用树枝状大分子测序方法实现的。我们在这里表明,在中间层的二茂铁的氧化还原电位值与在核心和外围的二茂铁的氧化还原电位值明显不同。尽管氧化还原电势值取决于位置,但是相对于位置,未观察到异质电子转移速率(k_0)的显着变化。这归因于树枝状聚合物自由旋转使电极和二茂铁单元之间的距离无效的可能性。最后,我们还表明,对于这些树突的两亲性组装体,未观察到法拉第电流,而相同的树突在非组装溶剂环境中确实表现出显着的法拉第电流。

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