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Preparation of TiC-SiC composite coatings on graphite flakes and their effects on hydrophilicity and dispersivity

机译:石墨薄片Tic-SiC复合涂层的制备及其对亲水性和分散性的影响

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摘要

To improve the water affinity and aqueous dispersivity of graphite, TiC-SiC composite coatings were successfully formed in situ on graphite flakes via a facile molten salt technique. The coatings contain TiC nanoparticles and SiC nanoparticles/nanowhiskers which envelop graphite homogeneously according to the X-ray diffraction (XRD), energy dispersive spectroscopy (EDS) and scanning electronic microscope (SEM) observations. Such coatings decreased the contact angle between water and graphite from similar to 101 to similar to 72 degrees, increased the absolute zeta potential to similar to 50 mV in the basic pH range, and lowered the apparent viscosity of its water suspension by at least 50%. It is believed that Ti and Si had been dispersed, slightly dissolved in the NaCI-NaF melt and then transported/diffused to graphite surfaces to form the in-situ composite coatings. The formation mechanisms of the composite coatings and the intermediate phase TiSi2 are proposed based on the characterization results, along with corresponding thermodynamic and kinetic evaluations. The improved water wettability and dispersivity of graphite would make it applicable to various water-based systems.
机译:为了提高水的亲和力和石墨的含水分散性,通过一个浅显的熔融盐技术成功地形成在石墨薄片原位生成TiC-SiC复合材料涂层。该涂层包含纳米颗粒的TiC和SiC纳米粒子/纳米晶须,其均匀地根据X射线衍射(XRD),能量分散光谱法(EDS)和扫描电镜(SEM)观察石墨信封。这样的涂层减少水与石墨之间的接触角由类似于101类似于72度,在碱性pH范围内提高了绝对ζ电位类似于50毫伏,并且通过至少50%的降低它的水悬浮液的表观粘度。据信,Ti和Si已经分散,略微溶解于氯化钠,氟化钠熔化和然后输送/扩散到石墨表面上以形成所述原位复合涂层。该复合涂层和中间相的TiSi2的形成机理是基于表征结果提出,与对应热力学和动力学的评价沿。改进后的水润湿性和石墨的分散性将使其适用于各种水性体系。

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