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Organic-inorganic hybrid nanocomposites from cubic silsesquioxanes.

机译:来自立方倍半硅氧烷的有机-无机杂化纳米复合材料。

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摘要

This dissertation is dedicated to nanostructure-processing-property relationship studies using well-defined functionalized cubic silsesquioxane (cube) nanocomposites to establish a comprehensive picture of nanocomposite behavior. In our approach, various functional groups are appended to cubes to mimic segments of common polymer structures followed by crosslinking reactions that lead to well-defined networks. The cubes behave as invariant, nano-sized inorganic crosslinkers uniformly distributed in polymer matrices, while various tether building parameters are selectively varied and their effects on physical properties are concordantly investigated in relation to changes in nanostructures. The network architectures can be directly analyzed via cube core dissolution by HF followed by GPC analysis.; Our initial efforts focus on the studies of cube nanocomposites prepared be reacting octaglycidyldimethylsiloxyoctasilsesquioxane (OG) and octa(dimethylsiloxyethylcyclohexenylepoxide) silsesquioxane ( OC) with diaminodiphenylmethane (DDM). These studies suggest that tether structures and properties dominate global thermomechanical properties. Macroscopic relaxation is minimized when bifurcated tethers form, but linear tether formation can be favored over bifurcated tether formation by controlling crosslinking chemistry. Cyclic vs. linear tether segments exhibit improved thermomechanical properties. Mechanical property and blending studies demonstrate non-linear structure-property relationships which appear to be true nanocomposite behavior.; Toughening of OC/DDM epoxy nanocomposites by core shell rubber particles demonstrates the concept of composite modification at nano and macro length scales. The results suggest that multiple properties can be improved simultaneously and independently.; Studies of epoxy and imide cube nanocomposite prepared from octaaminophenylsilsesquioxane (OAPS) also suggest that tether segmental structures and motions determine the global properties. Crosslink density, tether architecture, length and processing conditions such as choice of cure temperatures also affect nanocomposite macroscopic behavior greatly.; In conclusion, this work provides basic standards and guidelines for designing, synthesizing and processing cube nanocomposites, and characterizing nanostructures and properties. This study starts a new category of nanocomposites with excellent control of nanostructures and properties.
机译:本论文致力于利用定义明确的功能化立方倍半硅氧烷(立方)纳米复合材料建立纳米复合材料行为的综合图谱,进行纳米结构-加工-性能关系研究。在我们的方法中,将各种官能团附加到立方体上以模拟常见聚合物结构的链段,然后进行交联反应,从而形成定义明确的网络。立方体表现为不变的,均匀分布在聚合物基质中的纳米级无机交联剂,同时选择性地改变了各种系链构建参数,并根据纳米结构的变化一致研究了它们对物理性能的影响。可以通过HF溶解立方立方体核心,然后进行GPC分析来直接分析网络体系结构。我们的最初工作重点是通过使八缩水甘油基二甲基甲硅烷氧基辛基倍半硅氧烷( OG )和八(二甲基甲硅烷氧基乙基环己烯基环氧)八聚倍半硅氧烷( OC )与二氨基二苯基甲烷( DDM >)。这些研究表明,系链的结构和性质主导着整体的热机械性质。当形成分叉的系链时,宏观上的松弛被最小化,但是通过控制交联化学,相比于分叉的系链形成,线状系链的形成可能更有利。环状与线性系链片段表现出改善的热机械性质。力学性能和共混研究表明非线性结构-性质关系似乎是真正的纳米复合材料行为。核壳橡胶颗粒对OC / DDM环氧纳米复合材料的增韧表明了在纳米和宏观尺度上进行复合改性的概念。结果表明,可以同时且独立地改善多种性能。由八氨基苯基倍半硅氧烷(OAPS)制备的环氧和酰亚胺立方纳米复合材料的研究也表明,链节结构和运动决定了整体性能。交联密度,系链结构,长度和加工条件(例如固化温度的选择)也极大地影响了纳米复合材料的宏观行为。总之,这项工作为设计,合成和加工立方纳米复合材料以及表征纳米结构和特性提供了基本标准和指导原则。这项研究通过对纳米结构和性能的出色控制,开创了一种新型的纳米复合材料。

著录项

  • 作者

    Choi, Jiwon.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 248 p.
  • 总页数 248
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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