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Nanoscale characterization of surface-modified and surface-grafted polymers using environmental control scanning force microscopy.

机译:使用环境控制扫描力显微镜对表面改性和表面接枝的聚合物进行纳米级表征。

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摘要

With the development of multiple scanning probe microscopy (SPM) methods, polymer surface characteristics can be imaged and measured with nanoscale spatial resolutions that approach the characteristic length scales of polymer molecules. Applying these relatively new nanoscale SPM methods to specific polymer surfaces requires novel methodologies with careful interpretations. In this thesis, novel scanning force microscopy (SFM) operating procedures and corresponding data analyses and interpretations were developed while characterizing surface-modified and surface-grafted polymers. Surface characterization was performed with SFM along with other instrumentation to verify SFM measurements and to correlate SFM measurements with polymer properties.; In Chapter 1, the mechanisms and sensitivity of polymer surface characterization using SFM are discussed. Chapter 2 describes the instrumental aspects of environmental control scanning force microscopy and nanoindentation methodologies. Chapter 3 describes the surface-modified systems of plasma-treated polydimethylsiloxane (PDMS) PDMS tubing which was plasma treated prior to biomedical implantation was characterized in a novel way using SFM and nanoindentation to determine depth and severity of treatments. Chapter 4 describes collaborative efforts to graft poly(ethylene glycol) (PEG) directly to silicon surfaces. SFM methods along with other surface-sensitive techniques were used to verify the grafting success, and to correlate molecular weight with chain conformation. Chapter 5 describes how the surface grafting procedure of PEG onto silicon can be applied to SFM tip modifications for various applications. Chapter 6 highlights the efforts made to map relative adhesion and energy dissipation using Pulsed Force Mode SFM (PFM). Patterned self-assembled monolayers (SAMs) were prepared as chemically heterogeneous substrates, where the effect of adsorbed water could be measured while varying humidity. These developments were then applied to mechanically heterogeneous polymer films to illustrate the ability to extend the capabilities of scanning force microscopy of polymer surfaces.
机译:随着多重扫描探针显微镜(SPM)方法的发展,可以用接近聚合物分子特征长度尺度的纳米级空间分辨率对聚合物表面特征进行成像和测量。将这些相对较新的纳米级SPM方法应用于特定的聚合物表面,需要经过仔细解释的新颖方法。本文在表征表面改性和表面接枝聚合物的同时,开发了新颖的扫描力显微镜(SFM)操作程序以及相应的数据分析和解释。用SFM和其他仪器进行表面表征,以验证SFM测量并将SFM测量与聚合物性能关联起来。在第1章中,讨论了使用SFM表征聚合物表面的机理和敏感性。第2章介绍了环境控制扫描力显微镜和纳米压痕方法学的仪器方面。第3章介绍了经过等离子处理的聚二甲基硅氧烷(PDMS)的表面改性系统。在生物医学植入之前,对经过等离子处理的PDMS管进行了新颖的表征,使用SFM和纳米压痕技术来确定治疗的深度和严重性。第4章介绍了将聚乙二醇(PEG)直接接枝到硅表面上的合作努力。 SFM方法与其他表面敏感技术一起用于验证接枝成功,并使分子量与链构象相关。第5章介绍了如何将PEG结合到硅上的表面接枝过程可用于SFM针尖修饰,以用于各种应用。第6章重点介绍了使用脉冲力模式SFM(PFM)绘制相对附着力和能量耗散的工作。制备有图案的自组装单分子层(SAMs)作为化学异质基质,可以在改变湿度的同时测量吸附水的影响。然后将这些进展应用于机械异质的聚合物膜,以说明扩展聚合物表面扫描力显微镜功能的能力。

著录项

  • 作者

    Staarup, Donna Renee.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Chemistry Polymer.; Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 216 p.
  • 总页数 216
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);化学;
  • 关键词

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