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Novel Solid Silicon Oxycarbide Unmodified Carbon Nanotube Composite Coating: Structure, Topography and Mechanical Properties

机译:新型固体硅氧化碳未改性碳纳米管复合涂料:结构,形貌和机械性能

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A silicon oxycarbide-carbon nanotube coating on steel was synthesized using a novel approach utilizing unmodified carbon nanotubes (CNT), silane surfactant and large monomer-based silsesquioxane sol. This enabled the creation of very stable carbon nanotube dispersion, which in turn resulted in homogenous layers obtained in a simple dip-coating process. The samples were annealed in 800 °C in argon to obtain a uniform glassy silicon oxycarbide-based composite from a silsesquioxane precursor. The layers’ morphology and nanomechanical properties were investigated using a number of methods, including infrared spectroscopy (IR), X-ray diffraction (XRD), scanning electron microscopy (SEM), nanoindentation, Accelerated Property Mapping (XPM) and Quantitative Nanomechanical Mapping—an Atomic Force Microscopy method (QNM-AFM).
机译:利用未改性的碳纳米管(CNT),硅烷表面活性剂和大型单体基于Silsesquio烷烃溶胶合成钢上钢上的氧化硅 - 碳纳米管涂层。 这使得产生了非常稳定的碳纳米管分散体,其又导致在简单的浸涂过程中获得的均匀层。 将样品在800℃下退火,以获得来自Silsesquio烷前体的均匀玻璃氧化碳基复合物。 使用多种方法研究了层的形态和纳米机械性能,包括红外光谱(IR),X射线衍射(XRD),扫描电子显微镜(SEM),纳米温度,加速性质测绘(XPM)和定量纳米机械映射 - 原子力显微镜方法(QNM-AFM)。

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