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Morphological influence of ZnO nanostructures and their Cu loaded composites for effective photodegradation of methyl parathion

机译:ZnO纳米结构的形态学效应及其Cu载合复合材料,用于甲基硫磷的有效光降解

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This report signifies the synthesis of ZnO nanomds, cotton ball like structures, nanospheres and their Cu loaded counterparts for effective photocatalytic degradation of methyl parathion pesticide under UV light. Pesticides accumulation in ecosystem becomes major problem which affects health. Zinc oxide is a promising photocatalyst for degradation of pesticides and dyes because of its higher stability, low cost and non-toxic nature. Herein, the synthesized catalysts were characterised by diffused reflectance spectroscopy, X-ray diffraction, scanning electron microscopy techniques and transmission electron microscopy. ZnO nanorods (ZNR) proved to be better catalyst as compare to other synthesized nanostructures because of its elongated morphology. ZNR were nearly 1.4 times more efficient than ZnO cotton ball like structures. Moreover, photocatalytic activity was also enhanced by Cu loading due to low recombination rate of excitons. Cu loaded ZNR were found to degrade whole compound up to 99% in just 80 min whereas bare ZNR took 3 h under similar conditions. Thus, efficiency of CuZNR had been increased nearly 6 folds as that of bare ZNR.
机译:本报告称赞ZnO纳米组合,棉球等结构,纳米球及其Cu负载对应物的合成,用于UV光下的有效光催化降解甲基脱硫农药。生态系统中的农药积累成为影响健康的主要问题。由于其稳定性,低成本和无毒性质,氧化锌是一种有前途的光催化剂,用于降解农药和染料。这里,合成催化剂的表征通过扩散反射光谱,X射线衍射,扫描电子显微镜技术和透射电子显微镜。由于其细长的形态,ZnO纳米杆(ZnR)被证明是与其他合成纳米结构相比的更好的催化剂。 ZnR比Zno棉球等结构效率差约1.4倍。此外,由于激子的低重组率,Cu载荷也增强了光催化活性。发现Cu的ZnR被发现在仅80分钟内降解全部99%,而裸ZnR在相似条件下服用3小时。因此,CuznR的效率随着裸ZNR的效率增加了近6倍。

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