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Strategies exploiting functions and self-assembly properties of bioconjugates for polymer and materials sciences

机译:聚合物和材料科学利用生物共轭物的功能和自组装特性的策略

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摘要

Controlling interactions in synthetic polymers as precisely as in proteins would have a strong impact on polymer science. Advanced structural and functional control can lead to rational design of integrated nano- and microstructures. To achieve this, properties of monomer sequence-defined peptides were exploited. Through their incorporation as monodisperse segments into synthetic polymers we learned in recent years how to program the structure formation of polymers, to adjust and exploit interactions in such polymers, to control inorganic-organic interfaces in fiber composites and induce structure in biomacro-molecules like DNA for biomedical applications.
机译:像蛋白质一样精确地控制合成聚合物中的相互作用将对聚合物科学产生重大影响。先进的结构和功能控制可以合理地设计集成的纳米和微观结构。为了实现这一点,开发了单体序列定义的肽的特性。通过将它们作为单分散链段掺入到合成聚合物中,我们近年来了解了如何编程聚合物的结构形成,调节和利用此类聚合物中的相互作用,控制纤维复合材料中的无机-有机界面以及诱导生物大分子(如DNA)中的结构用于生物医学应用。

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