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光化学合成聚合纤维涂层及其嵌入基质材料:纤维-基质界面的形态和纳米力学性能。

Photochemical synthesis of polymeric fiber coatings and their embedding in matrix material: morphology and nanomechanical properties at the fiber-matrix interface.

机构信息

Department of Physical Chemistry II, University of Bayreuth , Bayreuth 95440, Germany.

出版信息

ACS Appl Mater Interfaces. 2012 Jul 25;4(7):3484-92. doi: 10.1021/am300576c. Epub 2012 Jun 28.

Abstract

In this contribution, we present a three-step pathway to produce a novel fiber coating, study its embedding in epoxy resin and characterize its nanomechanical properties at the interface between fiber and matrix. Inorganic surfaces were sulfhydrylated for subsequent use in thiol-initiated ene photopolymerization. The influence of water on the sulfhydrylation process was studied to find conditions allowing monomolecular deposition. Surface morphology as well as SH-content were evaluated by UV/vis spectroscopy, atomic force microscopy and spectroscopic ellipsometry. Brush-like polymer layers (PS and PMMA) were introduced by UV-light initiated surface polymerization of vinyl monomers. Polymer growth and morphology were studied. After embedding, the nanomechanics of the interfacial region of the fibers was studied. AFM force spectroscopy allowed the mapping of the stiffness distribution at the cross-section of the composite with high spatial resolution. Elastic moduli were determined by Hertzian contact mechanics. The individual phases of the composite material (fiber, interphase, and matrix) can be clearly distinguished based on their mechanical response. The synthesis, morphology, and mechanical properties of an interphase based on a polymeric graft-film swollen with matrix material are shown, and perspectives of these novel coatings for improved matrix-fiber compatibility and interfacial adhesion are discussed.

摘要

在本研究中,我们提出了一种三步法来制备新型纤维涂层,研究其在环氧树脂中的嵌入情况,并在纤维与基体的界面处对其纳米力学性能进行表征。无机表面进行巯基化处理,以便后续进行硫醇引发的烯丙基光聚合。研究了水对巯基化过程的影响,以找到允许单分子沉积的条件。通过紫外/可见光谱、原子力显微镜和光谱椭圆术评估了表面形貌和 SH 含量。通过紫外光引发的乙烯基单体表面聚合引入了刷状聚合物层(PS 和 PMMA)。研究了聚合物的生长和形貌。嵌入后,研究了纤维界面区域的纳米力学性能。AFM 力谱法允许以高空间分辨率对复合材料的横截面的刚度分布进行映射。弹性模量通过赫兹接触力学确定。基于聚合物接枝膜与基体材料溶胀的界面相的复合材料的各个相,可以根据其力学响应清晰地区分。展示了基于聚合物接枝膜的界面相的合成、形态和力学性能,并讨论了这些新型涂层在改善基体-纤维相容性和界面粘附方面的前景。

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