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Effect of Graphene Carbon Nitride on Ultraviolet-Curing Coatings

机译:石墨烯氮化物对紫外线固化涂料的影响

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摘要

Graphene carbon nitride (g-C3N4) was successfully prepared by semi-closed pyrolysis and then incorporated into the ultraviolet (UV)-curing system to synthesize different specimens of g-C3N4-hybridized UV-curing (g-C3N4/UV) coatings. The apparent appearance and dispersity g-C3N4 were characterized through X-ray diffraction (XRD), scanning electron microscopy (SEM), and Fourier transform infrared spectroscopy (FTIR). The influence of the curing speed and mechanical properties was also tested. The dispersion level of g-C3N4 can be kept less than 1 μm by mechanical mixing. The pencil hardness of composite coatings could be 6H while the adhesion based on glass could be 1 level. The degree of curing of the coating could be obviously improved by the addition of g-C3N4, leading to a 7 percent increase of the gel content. Additionally, the decomposition of hard segments of polyurethane acrylate could be avoided by the use of g-C3N4 resulting in an increasing stability to heat. We found the gel content in an aerobic environment was lower than that in an anaerobic environment. On this basis, the function and mechanism of g-C3N4 was investigated in detail and methods to eliminate the O2 were proposed.
机译:通过半封闭热解制备石墨烯碳氮化物(G-C3N4),然后掺入紫外(UV) - 固化系统中以合成不同的G-C3N4杂交的UV固化(G-C3N4 / UV)涂层的不同标本。表观外观和分散性G-C3N4通过X射线衍射(XRD),扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)表征。还测试了固化速度和机械性能的影响。通过机械混合可以使G-C3N4的分散水平保持小于1μm。复合涂层的铅笔硬度可以是6小时,而基于玻璃的粘合可以是1水平。通过添加G-C3N4可以明显提高涂层的固化程度,导致凝胶含量增加7%。另外,通过使用G-C3N4可以避免聚氨酯丙烯酸酯的硬链段的分解,从而导致加热的稳定性增加。我们发现有氧环境中的凝胶含量低于厌氧环境。在此基础上,详细研究了G-C3N4的功能和机制,并提出了消除O2的方法。

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