首页> 外文学位 >Ketenes in Polymer Science: An Emerging Methodology for Applications in Materials Chemistry.
【24h】

Ketenes in Polymer Science: An Emerging Methodology for Applications in Materials Chemistry.

机译:高分子科学领域的Ketenes:一种在材料化学中应用的新兴方法论。

获取原文
获取原文并翻译 | 示例

摘要

Function matters in materials science, and methodology that provides paths to multiple functions in one step are to be prized. Therefore, we have introduced the versatile reactivity of ketenes to polymer chemistry. New materials synthesized take advantage of Meldrum's acid as both a synthetic building block and a thermolytic precursor to dialkyl ketenes. In many cases, ketenes are directly detected by their characteristic infrared absorption, among other methods, and are stable in ambient conditions. The inherent property of ketenes to provide crosslinking via dimerization, to act as a reactive chemical handle via addition, or both, provides a simple methodology for the downstream engineering of synthetic polymers. The advances described herein provide a platform technology for diverse applications in materials science.;The key innovation to realizing access to robust ketenes was the use of Meldrum's acid as a modular, stable, and user-friendly ketene precursor that could be incorporated into a number of polymer systems. The easy design and synthesis of Meldrum's acid-containing polymers allowed us to implement this methodology into a wide variety of well-studied materials including vinyl polymers, polyolefins, polynorbornenes, and polyethers. The utility of ketenes has enabled them to contribute to a number of challenges in materials science, including the generation of functional, nanopatterned surfaces by microcontact printing, a synthesis-driven approach toward controlling the properties of crosslinked polyolefin materials, and the fabrication of mechanically robust, solvent stable nanostructured templates. Furthermore, we have tuned the chemistry of the Meldrum's acid building blocks in order to lower the ketene formation temperature by over 50 ºC, enabling our methodology to be employed under mild processing conditions and providing new mechanistic insights into thermolytic reactions.;The rediscovery of ketenes as a versatile and valuable functional group in polymer chemistry conjures the prolific career arc of Hermann Staudinger and serves as another example of under-appreciated functional groups contributing to polymer science. The facile access to Meldrum's acid containing polymers and the well-developed chemistry of ketenes assure that this methodology will be a powerful tool for chemists, materials scientists, and engineers in the future.
机译:功能在材料科学中很重要,在一步之内就可以提供多种功能的方法论应该受到重视。因此,我们介绍了乙烯酮对聚合物化学的通用反应性。合成的新材料利用Meldrum的酸作为二烷基烯酮的合成构件和热解前体。在许多情况下,除其他方法外,烯酮均通过其特征性的红外吸收直接检测到,并且在环境条件下稳定。烯酮通过二聚作用提供交联,通过加成或二者兼而有之作为反应性化学手柄的固有性质为合成聚合物的下游工程化提供了简单的方法。本文所述的进展为材料科学中的各种应用提供了平台技术。实现强大的烯酮的关键创新是将Meldrum的酸用作模块化,稳定且用户友好的烯酮前体,可以将其并入多种聚合物系统。 Meldrum含酸聚合物的简单设计和合成使我们能够将这种方法应用于各种经过充分研究的材料,包括乙烯基聚合物,聚烯烃,聚降冰片烯和聚醚。烯酮的实用性使其能够为材料科学领域的许多挑战做出贡献,包括通过微接触印刷产生功能性的,具有纳米图案的表面,用于控制交联聚烯烃材料性能的合成驱动方法以及机械坚固的制造,溶剂稳定的纳米结构模板。此外,我们已经调整了Meldrum酸构建基块的化学结构,以将烯酮的形成温度降低50ºC以上,从而使我们的方法学能够在温和的加工条件下使用,并为热解反应提供新的机理见解。;烯酮的重新发现作为聚合物化学中一种多用途且有价值的官能团,可以使赫尔曼·斯托丁格(Hermann Staudinger)拥有丰富的职业生涯,并且可以作为另一个未被充分认识的官能团的例子,对聚合物科学做出了贡献。轻松获得Meldrum含酸的聚合物以及成熟的乙烯酮化学,可确保该方法学将来成为化学家,材料科学家和工程师的强大工具。

著录项

  • 作者

    Leibfarth, Frank Albert.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Chemistry Organic.;Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 243 p.
  • 总页数 243
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号