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Solvatochromism of dye-labeled dendronized polymers of generation numbers 1–4: comparison to dendrimers

机译:染料标记的1-4代树突状聚合物的溶剂变色:与树状聚合物的比较

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摘要

Two series of dendronized polymers (DPs) of generations g = 1–4 with different levels of dendritic substitution (low and high) and a solvatochromic probe at g = 1 level are used to study their swelling behavior in a collection of solvents largely differing in polarity as indicated by the Kamlet–Taft parameters. This is done by measuring the UV-Vis spectra of all samples in all solvents and determining the longest wavelength absorptions (λmax). The λmax values fall into a range defined by the extreme situations, when the solvatochromic probe is either fully surrounded by solvent or completely shielded against it. The former situation is achieved in a model compound and the latter situation is believed to be reached when in a poor solvent the dendritic shell around the backbone is fully collapsed. We observe that solvent penetration into the interior of the DPs decreases with increasing g and does so faster for the more highly dendritically substituted series than for the less highly substituted one. Interestingly, the swelling of the more highly substituted DP series already at the g = 4 level has decreased to approximately 20% of that at the g = 1 level which supports an earlier proposal that high g DPs can be viewed as nano-sized molecular objects. Furthermore, when comparing these two DP series with a g = 1–6 series of dendrimers investigated by Fréchet et al. it becomes evident that even the less substituted series of DPs is much less responsive to solvent changes as assessed by the solvatochromic probe than the dendrimers, suggesting the branches around the (polymeric) core in DPs to be more densely packed compared to those in dendrimers, thus, establishing a key difference between these two dendritic macromolecules.
机译:使用两个系列的g = 1-4的树突化聚合物(DPs)进行不同程度的树突取代(低和高)和g = 1的溶剂化变色探针,以研究它们在一系列溶剂中的溶胀行为极性,如Kamlet-Taft参数所示。通过测量所有溶剂中所有样品的UV-Vis光谱并确定最长的波长吸收(λmax),可以完成此操作。当溶剂化变色探针完全被溶剂包围或完全被溶剂屏蔽时,λmax值将落入极端情况所定义的范围内。前者是在模型化合物中实现的,后者是在不良溶剂中骨架周围的树枝状壳完全塌陷时达到的。我们观察到,溶剂渗透到DP内部的程度随着g的增加而降低,并且对于树状取代度更高的系列而言,其渗透速度要快于取代度较低的系列。有趣的是,已经在g = 4的水平上取代程度更高的DP系列的溶胀已降至在g = 1的水平下的溶胀的大约20%,这支持了较早的建议,即高g DP可以看作是纳米分子分子。此外,当将这两个DP系列与g = 1-6系列的树枝状聚合物进行比较时,Fréchet等人进行了研究。显而易见的是,如溶剂变色探针所评估的,甚至较少取代的DP系列对溶剂变化的响应也比树状聚合物小得多,这表明与树状聚合物中的DP相比,DP中(聚合物)核心周围的分支更密集地堆积,因此,在这两个树枝状大分子之间建立了关键的区别。

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