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A 'Toolkit' of Small Molecules for Polymer Assembly and Post-Synthetic Modification Using 'Click' and Photoactive Chemistries

机译:小分子的“工具包”,用于使用“点击”和光敏化学物质进行聚合物组装和合成后修饰

摘要

Small molecules have been synthesized toward the goals of constructing and modifying polymeric materials according to simple, generalizeable, and universal processes. The prepared compounds rely upon a combination of photochemistry and the 'click' philosophy to alter the architecture, bulk properties, or surface chemistry of polymers. In Chapter 1, a review is presented that details the many implementations of the 'click' philosophy to polymer chemistry. The influence of 'click' and photochemistry upon macromolecules is discussed using a topological approach to polymer architecture. Chapter 2 details the synthesis of several second-generation homobifunctional exogenous photocrosslinkers that extend upon previous work from our group. Additionally, a first-generation crosslinker is used to core-crosslink micellar aggregates of block copolymers. Chapter 3 describes the design, synthesis, and implementation of a photoactive 'click' activator for polymer surfaces. This chapter extends the notion of a material-specific anchor from hard substrates to a range of soft polymer substrates. Chapter 4 is an inquiry into the nature of the photoreaction of a standard photoactive moiety - benzophenone - with model compounds that represent polymers in which the crosslinkers of Chapter 2 are embedded. Comparison of competitive rates of abstraction gives insight into the reactive preferences of the crosslinkers and anchors of the previous chapters. In Chapter 5 small molecules and macromonomers are described that build upon the compounds described in previous chapters which collectively form the basis of a 'toolkit' approach to polymer assembly and modification. Variations and extensions upon the 'toolkit' are detailed in order to give a sense of the future possibilities of this approach.
机译:为了根据简单,可概括和通用的方法来构造和改性聚合物材料,已经合成了小分子。制备的化合物依赖于光化学和“点击”原理的结合来改变聚合物的结构,本体性质或表面化学。在第1章中,将对聚合物化学的“点击”原理的许多实现进行详细介绍。使用聚合物结构的拓扑方法讨论了“点击”和光化学对大分子的影响。第2章详细介绍了一些第二代同双功能外源光交联剂的合成,这些合成扩展了我们小组以前的工作。另外,第一代交联剂用于核心交联嵌段共聚物的胶束聚集体。第3章介绍了用于聚合物表面的光敏“点击”活化剂的设计,合成和实现。本章将特定材料锚的概念从硬质基材扩展到一系列软质聚合物基材。第4章对标准光敏部分(二苯甲酮)与代表其中嵌入了第2章交联剂的聚合物的模型化合物的光反应性质进行了研究。比较竞争性抽象速率可以深入了解前几章中交联剂和锚的反应性偏好。在第5章中,将描述基于前几章所述化合物的小分子和大分子单体,这些化合物共同构成了“组装”和“修饰”聚合物的“工具箱”方法的基础。详细介绍了“工具包”的各种变化和扩展,以使您对这种方法的未来可能性有所了解。

著录项

  • 作者

    Lancaster Jeffrey R.;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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