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首页> 外文期刊>Journal of the European Ceramic Society >Hydrophobic nanocrystalline glazes based on cassiterite for self-cleaning outdoor power grid insulators
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Hydrophobic nanocrystalline glazes based on cassiterite for self-cleaning outdoor power grid insulators

机译:基于自清洁室外电网绝缘子的疏水纳米晶体釉面

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Self-cleaning hydrophobic glazes were prepared using a base industrial glaze. A semiconducting component (95SnO2.xSb2O3.(5-x)NiO, where x = 0-5), in which cassiterite nano-sized needles were crystallized was added to the base glaze. The glazes (named SbxNi(5-x)) were applied on a porcelain insulator and gloss fired in an industrial furnace at 1310 degrees C. The water contact angle (WCA), electrical resistivity and band gap of the glazes were measured. The most decisive factors in the resulted properties were the amount and composition of the semiconducting component and the morphology of the crystallized cassiterite phase. With increasing Sb2O3 content, the crystallinity increased and the needles became shorter and smaller resulting in a higher specific surface area, encouraging air buckets entrapment, and therefore the highest WCA of 147.9. This sample also demonstrated the lowest resistivity (28.35 M omega.cm), due to the presence of maximum Sb ions as electron donors, creating the lowest band gap (2.5 eV). On the contrary, the sample Sb4Ni1 showed the highest resistivity; this was due to the reduction of mobility as a result of the presence of very larger Sb ions in the cassiterite structure with smaller Sn ions, causing charge carrier scattering.
机译:使用基础工业釉制备了自清洁疏水釉。将一种半导体成分(95SnO2.xSb2O3.(5-x)NiO,其中x=0-5)加入基釉中,其中锡石纳米针状物结晶。将釉料(命名为SbxNi(5-x))涂敷在瓷绝缘子上,并在1310℃的工业炉中燃烧。测量了釉料的水接触角(WCA)、电阻率和带隙。产生性能的最决定性因素是半导体成分的数量和组成以及结晶锡石相的形态。随着Sb2O3含量的增加,结晶度增加,针状物变短变小,从而产生更高的比表面积,鼓励空气桶截留,因此最高WCA为147.9。该样品还显示出最低的电阻率(28.35 MΩ.cm),这是因为存在最大的Sb离子作为电子供体,从而产生最低的带隙(2.5 eV)。相反,样品Sb4Ni1的电阻率最高;这是因为锡石结构中存在非常大的Sb离子和较小的Sn离子,导致电荷载流子散射,从而导致迁移率降低。

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