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首页> 外文期刊>CERAMICS INTERNATIONAL >Visible light driven photocatalytic activity of unsubstituted and Ag1+ / Al3+ -substituted CuO nanoflakes
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Visible light driven photocatalytic activity of unsubstituted and Ag1+ / Al3+ -substituted CuO nanoflakes

机译:可见光驱动的光催化活性未取代的,Ag1 + / Al3 + -substiteduted cuo nanoflakes

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Unsubstituted and (Ag1+ Cu2+) substituted CuO nanoflakes were prepared using simple co-precipitation technique. Structural and morphological investigations were performed using X-ray diffraction (XRD) and scanning electron microscopy (SEM) respectively. XRD analysis confirmed the monoclinic crystal structure of all compositions of CuO nanoflakes. SEM analysis confirmed the-flake like morphology of CuO. Energy dispersive Xray spectroscopy (EDX) confirmed the decreased oxygen contents in various derivatives of CuO flakes. This indicated the substitution of Cu2+ ions with Ag1+ and Al3+ ions. UV-visible analysis showed that all derivatives of CuO nanoflakes absorbed light in the entire visible region, thus proved potential candidate to harvest solar radiations. Optical bandgap value was found to show red shift with Ag1+ substitution and blue shift with Al3+ substitution. Ag proved itself a potential candidate towards the electrical conductivity improvement. The photocatalytic activity was found to increase with modified CuO nanoflakes. The maximum photocatalytic efficiency was observed by Ag-doped CuO nanoflakes.
机译:使用简单的共沉淀技术制备未取代的和(Ag1 + Cu2 +)取代的CuO纳米薄蛋白。使用X射线衍射(XRD)和扫描电子显微镜(SEM)进行结构和形态学研究。 XRD分析证实了CuO纳米薄片的所有组成的单斜晶结构。 SEM分析证实了CUO的形态样的薄片。能量分散X射线光谱(EDX)证实了CUO薄片各种衍生物中的氧含量降低。这表明用Ag1 +和Al3 +离子取代Cu 2 +离子。 UV可见分析表明,CuO纳米薄片的所有衍生物在整个可见区域中吸收光,因此证明了收获太阳辐射的潜在候选者。发现光学带隙值显示与AG1 +替换和使用AL3 +替换的蓝色转换。 AG证明了潜在的候选者朝着电导率改进。发现光催化活性与改性CuO纳米薄膜增加。通过Ag掺杂的CuO纳米薄膜观察到最大的光催化效率。

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