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Synthesis of MnO2 nanoparticles and their effective utilization as UV protectors for outdoor high voltage polymeric insulators used in power transmission lines

机译:MnO2纳米粒子的合成及其作为输电线路户外高压聚合物绝缘子紫外线防护剂的有效利用

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Polymeric outdoor insulators derived from polydimethyl siloxane (PDMS) are replacing conventional ceramic insulators in high voltage power transmission lines because of their improved electrical, mechanical and hydrophobic performance. Major impediments like failure of polymeric insulators due to natural aging by UV radiation from sunlight and electrical tracking have limited their usage. Herein, it is demonstrated about the usage of manganese dioxide based nanoparticles as an effective agent to prevent the UV accelerated aging of polymeric insulators. MnO2 nanoparticles of different shapes and dimension were synthesized using a single step wet chemical reaction between KMnO4 and methyl acetate. Namely, 2D delta-MnO2 nanosheets, 1D alpha-MnO2 nanowires and 3D alpha-MnO2 nanorods were formed. These nanoparticles were extensively characterized by various techniques. In the scope of the study, the delta-MnO2 (10(-5) S cm(-1); 1 MHz) nanosheet demonstrated the lowest electrical AC conductivity and a higher band gap compared to the 1D (10(-4) S cm(-1); 1 MHz) and 3D variety (10(-4) S cm(-1); 1 MHz). Owing to the lower electrical conductivity of the delta-MnO2 nanosheet, it was further incorporated at different filler volumes in the polymeric matrix (blend of polydimethyl siloxane/ethylene vinyl acetate) as a UV protector material for the polymer based high voltage composite polymeric insulator. The UV protection ability, induced by the delta-MnO2 nanosheet, was achieved without adversely affecting other properties of the formulated insulator compound material. The optimum properties of the composite were found to be obtained at 3 phr (three parts of delta-MnO2 nanosheet per hundred parts of polymer) loading of the nanosheet. The current work will promise to pave a new pathway for the generation of UV resistant high voltage power transmission line insulator materials. It would be interesting in the future to study the effect of incorporation of manganese dioxide based nanosheets on the UV resistant properties of different polymeric matrices.
机译:源自聚二甲基硅氧烷(PDMS)的聚合户外绝缘子,由于其改善的电气,机械和疏水性能,正在取代高压输电线路中的常规陶瓷绝缘子。主要障碍如聚合物绝缘子由于阳光的紫外线辐射的自然老化和电跟踪而失效,限制了它们的使用。在本文中,证明了基于二氧化锰的纳米颗粒作为防止聚合物绝缘体的紫外线加速老化的有效试剂的用途。使用KMnO4和乙酸甲酯之间的一步湿化学反应合成了不同形状和尺寸的MnO2纳米颗粒。即,形成2Dδ-MnO2纳米片,1Dα-MnO2纳米线和3Dα-MnO2纳米棒。这些纳米颗粒通过各种技术广泛地表征。在研究范围内,与一维(10(-4)S相比,δ-MnO2(10(-5)S cm(-1); 1 MHz)纳米片表现出最低的交流电导率和更高的带隙cm(-1); 1 MHz)和3D变化(10(-4)S cm(-1); 1 MHz)。由于δ-MnO2纳米片的较低的电导率,其以不同的填料体积进一步掺入到聚合物基体中(聚二甲基硅氧烷/乙烯乙酸乙烯酯的混合物),作为基于聚合物的高压复合聚合物绝缘子的紫外线保护材料。实现了由δ-MnO2纳米片诱导的紫外线防护能力,而不会不利地影响配制的绝缘体复合材料的其他性能。发现在3phr(每100份聚合物三份δ-MnO2纳米片)负载纳米片时获得复合材料的最佳性能。当前的工作将有望为产生抗紫外线的高压输电线路绝缘子材料铺平一条新的道路。将来研究基于二氧化锰的纳米片的掺入对不同聚合物基质的抗紫外线性能的影响将是有趣的。

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