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The manipulation and characterization of patterned surfaces: I. Oriented nanoscale porous materials II. Drop mobility on surfaces with patterned wettability.

机译:图案化表面的处理和特征:I.取向的纳米级多孔材料II。滴在具有图案化润湿性的表面上流动。

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摘要

This thesis describes research in the control over long-range order and orientation of porous nanoscale materials and liquid mobility on surfaces with patterned chemistry and topography. A variety of researches will cover the topics ranging from preparation of ordered block copolymers and anodized aluminum oxides, and dynamic wettability on chemically patterned wafers with or without topography.;The structure evolution of BCP thin films exposed with binary solvent mixture vapors at different temperatures will be investigated by scanning force microscopy and grazing incidence small angle X-ray scattering. The swollen thin films will undergo typical phase separation depending on thickness, temperature, and exposure time, which will determine the morphology of the resulting porous templates.;A new approach for preparing ordered nanoporous AAO will be demonstrated using the pattern transfer of BCP structures to the surface of aluminum. By solvent annealing the BCP films in solvent vapor, arrays of cylindrical microdomains with a high degree of lateral order will be produced. Using reactive ion etching, the template of the nanoporous film will be transferred to the Al surface and the subsequent anodization in a concentrated acid solution will generate channels with the center-to-center distance and lateral order of the BCP film.;A study of drop mobility on a surface with patterned wettability will be the final topic in the thesis. Silane chemistry, selective etching, and microcontact printing will be used to prepare designs on chemically patterned wafers with topography. The samples will have two different areas; one on which a liquid drop will move easily and another that will restrict its motion. Dynamic contact angle measurements will then be performed on the surfaces to determine the effect on drop mobility. The objective is to show that both contact angle and contact angle hysteresis are important in regards to drop mobility. The growth of condensed water droplets on these surfaces will be viewed and recorded.
机译:本文描述了对具有图案化化学和形貌的多孔纳米级材料的长程有序和取向以及表面上的液体迁移率进行控制的研究。各种各样的研究将涉及以下主题,包括有序嵌段共聚物和阳极氧化铝的制备以及在具有或不具有地形的化学图案化晶圆上的动态润湿性;;在不同温度下暴露于二元溶剂混合物蒸汽的BCP薄膜的结构演变将通过扫描力显微镜和掠入射小角度X射线散射进行研究。溶胀的薄膜将经历典型的相分离,具体取决于厚度,温度和曝光时间,这将决定所得多孔模板的形态。;将通过使用BCP结构的图案转移将新的制备有序纳米多孔AAO的方法证明。铝的表面。通过在溶剂蒸气中对BCP膜进行溶剂退火,将生产出具有高度横向有序度的圆柱形微区阵列。使用反应性离子蚀刻,纳米多孔膜的模板将被转移到Al表面,随后在浓酸溶液中进行阳极氧化,将产生具有BCP膜中心距和横向顺序的通道。具有图案化润湿性的表面上的液滴流动性将是本文的最后主题。硅烷化学,选择性蚀刻和微接触印刷将用于在具有拓扑结构的化学图案化晶圆上进行设计。样本将有两个不同的区域。一种在其上液滴很容易移动,另一种将限制其运动。然后将在表面上执行动态接触角测量,以确定对液滴流动性的影响。目的是表明接触角和接触角磁滞对于液滴迁移率都很重要。在这些表面上凝结的水滴的生长将被观察和记录。

著录项

  • 作者

    Kim, Bokyung.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:12

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