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Polymer gel: Kinetic, dynamic studies and its applications as biomaterials.

机译:聚合物凝胶:动力学,动态研究及其在生物材料中的应用。

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摘要

The polymer gels especially hydrogels have a very special structure and useful features such as unusual volume phase transition, compatibility with biological systems, and sensitivity to environmental stimuli (temperature, pH value, electric field, light and more), which lead to many potential applications in physical and biochemical fields.; This research includes: (1) the theoretical and experimental studies of polymer gels on swelling kinetics, spinodal decomposition, and solution convection in gel matrix; (2) applications of polymer gels in wound dressing, tissue-simulating optical phantom and gel display.; The kinetics of gel swelling has been theoretically analyzed by considering coupled motions of both solvent and polymer network. Analytical solutions of the solvent and the network movement are derived from collective diffusion equations for a long cylindrical and a large disk gel. Kinetics of spinodal decomposition of N-isopropylacrylamide (NIPA) polymer gel is investigated using turbidity and ultrasonic techniques. By probing movement of domains, a possible time-dependent gel structure in the spinodal decomposition region is presented. Theoretical studies of solution convection in gel matrix have been done and more analysis on dimensionless parameters is provided.; To enhance the drug uptake and release capacity of silicone rubber (SR), NIPA hydrogel particles have been incorporated into a SR membrane. This SR/NIPA composite gel has promising attributes for wound dressing and other uses. Tissue-simulating optical phantom has been synthesized and studied using NIPA solution trapped inside a hydrogel. Polymer gels with engineered surface patterns were implemented. NIPA gel deposited on the surface of an acrylamide gel can be used as responsive gel display. A dynamically measurement technique of local shear modulus and swelling ratio of gel is presented based on an engineered periodic surface pattern as square array.
机译:聚合物凝胶,特别是水凝胶,具有非常特殊的结构和有用的功能,例如异常的体积相变,与生物系统的相容性以及对环境刺激(温度,pH值,电场,光等)的敏感性,这导致了许多潜在的应用在物理和生化领域。这项研究包括:(1)聚合物凝胶在凝胶基质中的溶胀动力学,旋节线分解和溶液对流的理论和实验研究; (2)聚合物凝胶在伤口敷料,组织模拟光学体模和凝胶展示中的应用。从理论上已经通过考虑溶剂和聚合物网络的耦合运动来分析凝胶溶胀的动力学。溶剂和网络运动的解析解是从长圆柱和大圆盘凝胶的集体扩散方程得出的。使用浊度和超声技术研究了N-异丙基丙烯酰胺(NIPA)聚合物凝胶的旋节线分解动力学。通过探测域的运动,提出了在旋节线分解区域中可能的时间依赖性凝胶结构。对凝胶基质中溶液对流进行了理论研究,并对无量纲参数进行了更多分析。为了增强硅橡胶(SR)的药物吸收和释放能力,已将NIPA水凝胶颗粒掺入SR膜中。这种SR / NIPA复合凝胶在伤口敷料和其他用途方面具有广阔的前景。使用陷于水凝胶中的NIPA溶液合成并研究了组织模拟光学模型。实施了具有工程化表面图案的聚合物凝胶。沉积在丙烯酰胺凝胶表面上的NIPA凝胶可用作响应性凝胶展示。提出了一种基于工程化的周期性表面图案为正方形阵列的凝胶局部剪切模量和溶胀率的动态测量技术。

著录项

  • 作者

    Wang, Changjie.;

  • 作者单位

    University of North Texas.;

  • 授予单位 University of North Texas.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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