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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Basic analytical investigation of plasma-chemically modified carbon fibers
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Basic analytical investigation of plasma-chemically modified carbon fibers

机译:等离子化学改性碳纤维的基本分析研究

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The background of the present investigation is to enhance the overall adherence of vapor grown carbon fibers (VGCF) to the surrounding polymer matrix in different applications by forming polar groups at their surfaces and by modifying the surface morphology. This has been done by plasma treatments using a low-pressure plasma with different gases, flow rates, pressures and powers. Two different types of carbon fibers were investigated: carbon microfibers and carbon nanofibers. The characterization of fiber surfaces was achieved by photoelectron spectroscopy (XPS), contact angle measurements and titration. These investigations were accompanied by scanning electron the surfaces by forming a layer with a thickness of the order of one nanometer mainly consisting of functional groups like hydroxyl, carbonyl and carboxyl. After functionalization of the complete surface, a further plasma treatment does not enhance the superficial oxygen content but changes slightly the poritions of the functional groups. A comparison of the methods applied provides a largely consistent image of the effect of plasma treatment.
机译:本研究的背景是通过在碳纳米管表面形成极性基团和改变表面形态,以增强气相生长碳纤维(VGCF)在不同应用中对周围聚合物基体的整体粘附性。这通过使用具有不同气体,流速,压力和功率的低压等离子体进行等离子体处理来完成。研究了两种不同类型的碳纤维:碳微纤维和碳纳米纤维。纤维表面的表征是通过光电子能谱(XPS),接触角测量和滴定实现的。这些研究伴随着通过形成厚度约为一纳米的层(主要由诸如羟基,羰基和羧基等官能团组成)的层扫描电子表面。整个表面官能化后,进一步的等离子体处理不会提高表面氧含量,但会稍微改变官能团的部分。所用方法的比较提供了等离子体处理效果的大致一致的图像。

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