首页> 外文期刊>Progress in Polymer Science >Macromolecular engineering: From rational design through precise macromolecular synthesis and processing to targeted macroscopic material properties
【24h】

Macromolecular engineering: From rational design through precise macromolecular synthesis and processing to targeted macroscopic material properties

机译:大分子工程:从合理的设计到精确的大分子合成和加工,再到有针对性的宏观材料性能

获取原文
获取原文并翻译 | 示例
           

摘要

Macromolecular engineering includes: rational design of the macromolecular structure including chain size,uniformity,topology,microstructure (sequencing and tacticity),composition and functionality;precise synthesis with high selectivity at reasonable cost,both in effort and environmental impact;assembly of macromolecules to supramolecular objects via controlled processing,including temperature,pressure,solvents,mechanical stresses,etc.;detailed characterization of the prepared materials at both molecular and macroscopic level;modeling of polymerization and processing conditions to aid in the design of appropriate conditions to reach targeted properties and function,and optimization of the entire process.Some recent unprecedented advances in control over various polymerization systems,including ionic,radical,coordination and even polycondensation have enabled synthesis of many new well-defined (co)polymers and some of them are briefly discussed.Precise control of various aspects of macromolecular architecture,including topology,functionality and microstructure have been achieved both in homogeneous and heterogeneous polymerization system and applied to preparation of polymeric hybrids,conjugates and other functional materials.The well-defined (co)polymers self-assembly or can be pre-assembled to materials with precisely controlled morphologies which can be affected and fixed by processing.The final macroscopic materials properties depend on molecular structure of (co)polymers and can be rationally retro-designed.
机译:大分子工程包括:合理设计大分子结构,包括链大小,均匀性,拓扑结构,微观结构(序列和立构规整度),组成和功能;以合理的成本,在努力和环境影响下以高选择性进行精确合成;将大分子组装成超分子通过控制加工(包括温度,压力,溶剂,机械应力等)实现目标;在分子和宏观水平上详细表征所制备材料;对聚合和加工条件进行建模,以帮助设计适当的条件以达到目标性能和在控制各种聚合体系方面,包括离子,自由基,配位甚至缩聚在内,最近在控制方面取得了前所未有的进展,从而合成了许多新型的(共)聚合物,并对其中一些进行了简要的讨论。精确控制Mac的各个方面在均相和非均相聚合体系中均实现了分子结构,包括拓扑结构,功能性和微观结构,可用于制备聚合物杂化物,共轭物和其他功能材料。定义明确的(共)聚合物可以自组装或可以预组装最终的宏观材料性能取决于(共)聚合物的分子结构,并且可以合理地进行重新设计。

著录项

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