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Expanding the limits of synthetic macromolecular chemistry through Polyphenylene Dendrimers

机译:通过聚苯的树枝状大分子扩展合成大分子化学的限制

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摘要

Polyphenylene dendrimers (PPDs) are a unique class of macromolecules because their backbone is made from twisted benzene repeat units that result in a rigid, shape-persistent architecture as reported by Hammer et al. (Chem Soc Rev 44:4072-4090, 2015) and Hammer and Mullen (Chem Rev 116:2103-210, 2016) These dendrimers can be synthetically tailored at their core, scaffold, and surface to introduce a wide range of chemical functionalities that influence their applications. It is the balance between the macromolecular properties of polyphenylene dendrimers with grandiose synthetic ingenuity that presents a template for the next generation of synthetic dendrimers to achieve complex structures other chemistry fields cannot. This perspective will look at how advances in synthetic chemistry have led to an explosion in the properties of polyphenylene dendrimers from their initial stage, as PPDs that were used as precursors for nanographenes, to next-generation dendrimers for organic electronic devices, sensors for volatile organic compounds (VOCs), nanocarriers for small molecules, and even as complexes with therapeutic drugs and viruses, among others. Ideally, this perspective will illustrate how the evolution of synthetic chemistry has influenced the possible structures and properties of PPDs and how these chemical modifications have opened the door to unprecedented applications.
机译:多聚苯乙烯树枝状像(Chem SoC Rev 44:4072-4090,2015)和锤子和穆伦(Chem Rev 116:2103-210,2016)这些树枝状大分子可以在它们的核心,脚手架和表面上综合定制,以引入各种化学功能影响他们的应用程序。它是具有宏观亚苯胺树枝状大分子的大分子特性与宏细胞合成巧合之间的平衡,其为下一代合成树枝状大分子呈现出复杂结构的下一代的模板不能。这种观点将研究合成化学的进步如何导致多聚亚苯胺树枝状大分子的性质的爆炸从它们的初始阶段,作为用作Nanoumbenes的前体的PPD,对于有机电子设备的下一代树枝状体,挥发性有机的传感器化合物(VOCS),小分子的纳米载体,甚至作为具有治疗药物和病毒的复合物等。理想情况下,这种观点将说明合成化学的演化如何影响PPD的可能结构和性质以及这些化学修饰如何将门打开到前所未有的应用。

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