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Electrochemical property, antioxidant activities, water treatment and solar cell applications of titanium dioxide - zinc oxide hybrid nanocomposite based on graphene oxide nanosheet

机译:基于石墨烯氧化物纳米液的二氧化钛 - 氧化锌杂交纳米复合材料的电化学性能,抗氧化活性,水处理和太阳能电池应用

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Antioxidant activity has been detected with the HT22 mouse Hippocampal Neuronal cell line. The photocatalytic properties, electrochemical properties and solar cell applications tests of fabricated (Titanium dioxide (TiO_2) nanoparticles-Zinc oxide (ZnO) nanoparticle) hybrid nanocomposite based on Graphene oxide nanosheet (GO) have been studied with different techniques. The electrochemical properties revealed by cyclic voltammetry analysis and the photocatalytic study have been evidenced by the interaction of synthesized nanoflower composite (GO@TiO_2ZnO) with mixed dyes (MB and RhB) and, also, with mixed pesticides (Tobaz and Metalxel). Absorbance intensities of examined organic pollution compounds were considerably quenched, this degradation was recorded by using the steady-state UV-Vis spectrophotometer under visible light source. Effect of fabricated GO@TiO_2ZnO hybrid nanocomposite on the HT22 mouse Hippocampal Neuronal cell line was measured and the reducing power activity showed the potential antioxidant property of the fabricate nanocomposite. The results showed that the fabricated hybrid nanoflower composite on graphene oxide (GO) surface has high photocatalytic efficiency for degradation of mixed organic compounds, this composite has been kept the viability of HT22 cells line. The electron-hole pair recombination was evidenced by photoluminescence (PL) analysis, where the fabricated nanocomposite has high electron transfer, so, the tests of solar cell applications have been revealed and confirmed that the fabricated hybrid nanocomposite has activity towards solar cell applications.
机译:用HT22小鼠海马神经元细胞系检测抗氧化活性。基于石墨烯纳米液(GO)研究制造(二氧化钛(TiO_2)纳米颗粒 - 氧化锌(ZnO)纳米颗粒 - 氧化锌(ZnO)氧化锌(ZnO)氧化锌(ZnO)纳米颗粒)杂种纳米复合材料的光催化性能,电化学性质和太阳能电池应用。通过混合染料(MB和RHB)的合成纳米辊复合材料(GO @ TiO_2ZNO)的相互作用,通过混合染料(MB和RHB)和混合染料(Tobaz和Meterxel),证明了通过混合染料(MB和RHB)的相互作用所显示的电化学性质。所检查的有机污染化合物的吸光度强度大大淬火,通过使用稳态UV-Vis分光光度计在可见光源下进行了这种降解。测量了在HT22小鼠海马神经元细胞系上进行制造的GO @ TiO_2ZNO杂交纳米复合物的效果,降低功率活性显示了纳米复合材料的潜在抗氧化性能。结果表明,氧化石墨烯(GO)表面上的制造的杂合纳米辊复合物具有高光催化效率,用于脱脂的混合有机化合物的降解,该复合物已保持HT22细胞系的活力。通过光致发光(PL)分析证明了电子 - 孔对重组,其中制造的纳米复合材料具有高电子转移,因此已经揭示并证实了制造的杂化纳米复合材料具有朝向太阳能电池应用的活动。

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