首页> 外文期刊>International Journal of Electrochemical Science >Electrochemical Synthesis of Mg-doped ZnO Nanotapers as Photocatalyst for Degradation of Bisphenol under Solar Light Irradiation
【24h】

Electrochemical Synthesis of Mg-doped ZnO Nanotapers as Photocatalyst for Degradation of Bisphenol under Solar Light Irradiation

机译:Mg掺杂ZnO纳米涂体作为光催化剂在太阳光照射下脱酚催化剂的电化学合成

获取原文
       

摘要

This paper released electrochemical synthesis of Mg doped ZnO nanotapers for degradation of bisphenol A (BPA) as toxic aquatic pollutant under UV and visible light irradiations. The pure and Mg-doped ZnO nanotapers photo-catalysts were prepared through an electrical field assisted method. The morphological, structural and optical properties of samples were characterized through the SEM,XRD and UV-Vis absorption spectra, respectively. The morphological and structural studies exhibited that the high density of pure and doped ZnO nanostructures were grown in vertically aligned taper-like shape and hexagonal wurtzite structures. Moreover, the doping process led to creation of the cubic MgO structure in ZnO nanotaper with (111) and (220) planes. The optical characterizations showed that the higher absorption peak was observed for doped samples due to the creation of oxygen deficiency and defects in grain structure of film. The Eg values were obtained 3.48 eV and 3.09 eV for pure ZnO and Mg-doped ZnO nanotapers films, respectively. The electrochemical studies by CV and EIS techniques showed the improvement of specific capacitance of electric double layer and film’s conductivity by Mg doping into ZnO matrix. The photocatalytic measurements displayed that the PBA degradation efficiencies were of 64.19 % and 100% for pure ZnO and Mg-doped ZnO nanotaper photo-catalysts for 70 minutes under UV irradiation, respectively. Therefore, the degradation efficiency of ZnO nanotapers was significantly improved by Mg doping. Furthermore, the PBA degradation efficiencies were 43.40 % and 100 % for pure and doped samples after 60 minutes under visible irradiation which indicates promotion of the degradation rate for Mg-doped ZnO nanotapers in visible irradiation. Eg value was decreased for doped samplesdue tothe presence of Mg2+ inside the Zn2+ sites of the ZnO lattice which improve the charge separation. As a result, Mg-doped ZnO nanotapers film not only photo-excited in the UV region but also its photocatalytic activity was delayed in the visible region.
机译:本文公布的Mg电化学合成掺杂的ZnO纳米锥为双酚A(BPA)作为UV下有毒的污染物的水生和可见光照射的劣化。纯和Mg掺杂的ZnO纳米锥光催化剂通过电场辅助法来制备。样品的形态,结构和光学性质通过SEM,XRD紫外 - 可见吸收光谱分别表征和。的形态和结构研究显示出纯和掺杂的ZnO纳米结构的高密度在垂直对准的锥形形状和六方纤锌矿结构中生长。此外,该掺杂工艺导致创建以ZnO纳米锥与(111)和(220)平面中的立方结构的MgO的。光学表征表明,观察到的掺杂样品由于在胶片颗粒结构的创建氧缺乏和缺陷的较高吸收峰。得到3.48 eV和3.09 eV的分别用于纯ZnO和Mg掺杂的ZnO纳米锥片,例如值。通过CV和EIS技术的电化学研究表明双电层和薄膜的电导率被Mg掺杂的ZnO成矩阵的比电容的提高。光催化测量显示的PBA降解率分别为64.19的%和100%纯的ZnO和Mg掺杂的ZnO纳米锥光催化剂在紫外光照射下70分钟,。因此,氧化锌纳米锥的降解效率被Mg掺杂物显著改善。此外,PBA降解效率为43.40%和100%纯和掺杂样品可见光照射,其指示促进降解速率为Mg掺杂的ZnO纳米锥在可见光照射下在60分钟后。例如值samplesdue其改善了电荷分离Zn2 +的网站的ZnO晶格内的Mg2 +的存在tothe降低用于掺杂。其结果,Mg掺杂的ZnO纳米锥膜不仅光激发在UV区而且其光催化活性是在可见光区域的延迟。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号