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Facile Construction of Vertically Aligned EuS-ZnO hybrid Core Shell Nanorod Arrays for Visible light driven Photocatalytic Properties

机译:可见光驱动光催化性能的垂直对准EUS-ZnO混合轴承座纳米棒阵列的构造

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We demonstrated the development of coupled semiconductor in the form of hybrid heterostructures for significant advancement in catalytic functional materials. In this article, we report the preparation of vertically aligned core shell ZnO-EuS nanorod photocatalyst arrays by a simple chemical solution process followed by sulfudation process. The XRD pattern confirmed formation of the hexagonal wurtzite structure of ZnO and cubic nature of the EuS. Cross sectional FESEM images show vertical rod array structure, and the size of the nanorods ranges from 80 to 120 nm. UV-Vis DRS spectra showed that the optical absorption of ZnO was significantly enhanced to the visible region by modification with EuS surfaces. TEM study confirmed that the surface of ZnO was drastically improved by the modification with EuS nanoparticle. The catalytic activity of EuS-ZnO core shell nanorod arrays were evaluated by the photodegradation of Methylene Blue (MB) dye under visible irradiation. The results revealed that the photocatalytic activity of EuS-ZnO was much higher than that of ZnO under natural sunlight. EuS-ZnO was found to be stable and reusable without appreciable loss of catalytic activity up to four consecutive cycles.
机译:我们证明了杂交异质结构形式的耦合半导体的发展,以实现催化功能材料的显着提高。在本文中,我们通过简单的化学溶液方法报告垂直对准的芯壳ZnO-EUS纳米棒光催化剂阵列的制备,然后进行硫化方法。 XRD模式证实了ZnO和eus立方本质的六边形紫立茨结构的形成。横截面FESEM图像显示垂直杆阵列结构,纳米棒的尺寸范围为80至120nm。 UV-VIS DRS光谱显示通过用EUS表面改性,通过改性,ZnO的光学吸收显着增强至可见区域。 TEM研究证实,通过用EUS纳米粒子的改性,ZnO的表面急剧提高。通过在可见光照射下的亚甲基蓝(Mb)染料的光降解来评估EUS-ZnO核壳纳米棒阵列的催化活性。结果表明,EUS-ZnO的光催化活性远高于自然阳光下ZnO的光催化活性。 EUS-ZnO被发现稳定可重复使用,而不明显丧失催化活性,直到四个连续四个循环。

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