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首页> 外文期刊>Science of advanced materials >Self-Assembly Behaviors of a Well-Defined Amphiphilic Brush Polymer at the Air-Water Interface
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Self-Assembly Behaviors of a Well-Defined Amphiphilic Brush Polymer at the Air-Water Interface

机译:定义明确的两亲刷子聚合物在空气-水界面处的自组装行为

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摘要

Self-assembly characteristics of a well-defined brush polymer, poly(oxy(n-dodecyl-thiomethyl)ethylene) were in detail investigated at the air-water interface with surface-area isotherm, X-ray reflectivity, and infrared spec-troscopy analyses. The brush polymer self-assembled at the air-water interface as a fully-extended chain via favorable lateral packing of the bristles in a fully extended conformation, forming highly ordered, oriented Lang-muir monolayer. This well-ordered monolayer was produced via a five-regime structure formation with varying surface pressure. A Langmuir monolayer film with ≤1.92 nm thick was formed in the low surface pressure regime ≤ 18 mN/m and then converted to a highly dense, ordered monolayer with 3.65 nm thick in the high surface pressure regime ≥35 mN/m through monolayer-to-bilayer transition and bilayer-to-monolayer inversion. These Langmuir film formations and their ordering and orientation might be driven by the well-defined chemical architecture and the lateral orderings of the polymer backbones and the bristles in fully extended conformations.
机译:在表面区域等温线,X射线反射率和红外光谱学的基础上,详细研究了定义明确的刷状聚合物聚(氧(正十二烷基-硫代甲基)乙烯)的自组装特性。分析。刷状聚合物通过在硬毛上以有利于完全伸展的构型横向填充而在空气-水界面处自组装,成为一条完全伸展的链,形成高度有序的定向Lang-muir单层。这种有序的单分子层是通过五种表面结构的变化形成的五态结构形成的。在≤18 mN / m的低表面压力条件下形成厚度为1.92 nm的Langmuir单层膜,然后通过单层转化为在≥35 mN / m的高表面压力条件下形成高密度的有序单层膜,厚度为3.65 nm。到双层过渡和双层到单层反转。这些朗缪尔(Langmuir)薄膜的形成及其有序性和取向性可能是由明确定义的化学结构以及聚合物骨架和刚毛在完全延伸的构型中的侧向排序所驱动。

著录项

  • 来源
    《Science of advanced materials 》 |2014年第11期| 2445-2452| 共8页
  • 作者单位

    Department of Chemistry, Division of Advanced Materials Science, Center for Electro-Photo Behaviors in Advanced Molecular Systems, BK School of Molecular Science, Pohang Accelerator Laboratory, and Polymer Research Institute, Pohang University of Science and Technology, Pohang 790-784, Korea;

    Department of Chemistry, Division of Advanced Materials Science, Center for Electro-Photo Behaviors in Advanced Molecular Systems, BK School of Molecular Science, Pohang Accelerator Laboratory, and Polymer Research Institute, Pohang University of Science and Technology, Pohang 790-784, Korea;

    Department of Chemistry and Program of Integrated Biotechnology, Sogang University, Seoul 121-742, Korea;

    Department of Chemistry, Division of Advanced Materials Science, Center for Electro-Photo Behaviors in Advanced Molecular Systems, BK School of Molecular Science, Pohang Accelerator Laboratory, and Polymer Research Institute, Pohang University of Science and Technology, Pohang 790-784, Korea;

    Department of Chemistry, Division of Advanced Materials Science, Center for Electro-Photo Behaviors in Advanced Molecular Systems, BK School of Molecular Science, Pohang Accelerator Laboratory, and Polymer Research Institute, Pohang University of Science and Technology, Pohang 790-784, Korea;

    Department of Polymer Chemistry, Kyoto University, Kyoto 615-8510, Japan;

    Department of Microbiology, Dongguk University College of Medicine, Gyeongju 780-714, Korea;

    Department of Chemistry and Program of Integrated Biotechnology, Sogang University, Seoul 121-742, Korea;

    Department of Polymer Chemistry, Kyoto University, Kyoto 615-8510, Japan;

    Department of Chemistry, Division of Advanced Materials Science, Center for Electro-Photo Behaviors in Advanced Molecular Systems, BK School of Molecular Science, Pohang Accelerator Laboratory, and Polymer Research Institute, Pohang University of Science and Technology, Pohang 790-784, Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Amphiphilic Brush Polymer; Air-Water Interface; Self-Assembly; Langmuir Film; X-ray Reflectivity;

    机译:两亲刷聚合物;空气-水接口;自组装;朗缪尔电影;X射线反射率;

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