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The Past 40 Years of Macromolecular Sciences: Reflections on Challenges in Synthetic Polymer and Material Science

机译:过去40年的大分子科学:对合成聚合物和物质科学挑战的思考

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摘要

Technology and science are often successful in discontinuities ("disruptive innovations" or "leapfrogging"), in turn allowing true, big societal development by entire changes in technology rather than by minuscule stepwise improvements. Examples are the emergence of modern computer science by inventing the field-effect transistor rather than further fine-tuning the "R?hrentransistor"; the development of (organic) light-emitting diodes in advance of the "Gasglühstrumpf"; CRISPR/Cas exceeding any previous genetic method or Ziegler-Natta polymerization enabling stereoregular polypropylene (PP) and high-density polyethylene (HDPE) in advance of freeradical polymerization. Where may the frogs in polymer science in the future "jump" to? Contemplating past achievements in (synthetic) polymer science, such as living polymerization, "click" chemistry, supramolecular chemistry, the potentially "leaping" areas of self-healing and (bio)degradable materials, amyloids, and biomaterials are reflected upon.
机译:技术和科学往往是不连续性的(“破坏性创新”或“跨越式”),又允许通过技术的整个变化而不是Minuscule逐步改进来实现真实,大的社会发展。示例是通过发明现场效应晶体管而不是进一步微调“r?hrentransistor”;在“Gasglühstrumpf”之前(有机)发光二极管的开发; CRISPR / CAS超过任何先前的遗传方法或Ziegler-Natta聚合,使能转身聚合的立体聚丙烯(PP)和高密度聚乙烯(HDPE)。在未来的聚合物科学中的青蛙在哪里“跳”到?考虑(合成)聚合物科学的过去成就,例如生物聚合,“点击”化学,超分子化学,自我愈合和(生物)可降解材料,淀粉样蛋白和生物材料的可能“跳跃”区域。

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