首页> 外文期刊>Applied Surface Science >Pulsed laser deposition of CoFe_2O_4/CoO hierarchical-type nanostructured heterojuction forming a Z-scheme for efficient spatial separation of photoinduced electron-hole pairs and highly active surface area
【24h】

Pulsed laser deposition of CoFe_2O_4/CoO hierarchical-type nanostructured heterojuction forming a Z-scheme for efficient spatial separation of photoinduced electron-hole pairs and highly active surface area

机译:COFE_2O_4 / COO分层型纳米结构型纳米结构杂交型脉冲激光沉积形成Z方案,用于有效的光诱导电子 - 空穴对的有效空间分离和高活性表面积

获取原文
获取原文并翻译 | 示例

摘要

The ablation of a target, composed of a homogeneous mixture of Fe & Co metal with H3BO3 powder, produces core-shell type particles on the as-deposited coating surface. Annealing at 600 degrees C in air transforms the core-shell into urchin-like particles having nanowires of 10-30 nm in diameter and 0.5-1 mu m in length, grown radially from the particle surface as a result of the stress created between core and shell. Microstructural and analytical characterization confirms that nanowires are composed of CoFe2O4 and CoO phases forming a heterojunction, which showed outstanding performance as a photocatalyst, requiring half the time for an organic water pollutant degradation reaction in comparison to similarly nanostructured single-metal oxide counterparts (Co3O4 and Fe2O3). Degradation reactions conducted in controlled conditions demonstrate that the urchin-like mixed oxide coatings are highly efficient both in direct photocatalysis and in photo-Fenton reaction. This overall enhancement in activity is due to a synergistic effect created at the heterojunction of CoFe2O4/CoO that allows the formation of a Z-scheme mechanism to facilitate the spatial separation of photoinduced electron-hole pairs. Moreover, the hierarchical urchin-like nanostructures provide a large number of active sites for photocatalytic reactions, while the lower band gap of CoFe2O4 permits better visible light absorption to effectively degrade organic pollutants even under visible light. Based on all the results, a plausible reaction mechanism is proposed related to Z-scheme heterojunction formed with CoFe2O4/CoO.
机译:由具有H3BO3粉末的Fe&Co金属的均匀混合物组成的靶的消融,在沉积的涂层表面上产生核壳型颗粒。在空气中以600℃的退火将核心壳转化为直径为10-30nm的纳米线的核心壳,长度为0.5-10μm,因此由于芯之间产生的应力而从颗粒表面径向生长和贝壳。微观和分析表征证实纳米线由CoFe2O4和CoO相组成,形成异质结,其显示出优异的性能作为光催化剂,需要一半的时间与类似纳米结构的单金属氧化物对应相比(CO3O4和Fe2O3)。在受控条件下进行的降解反应表明,皮内混合氧化物涂层在直接光催化和光芬反应中高效。活性的整体增强是由于Cofe2O4 / CoO的异质结产生的协同效果,其允许形成Z方案机制以促进光抑制电子孔对的空间分离。此外,分层核素样纳米结构提供了用于光催化反应的大量活性位点,而COFE2O4的较低带隙允许更好的可见光吸收,以有效地降解有机污染物即使在可见光下也会降解有机污染物。基于所有结果,提出了一种与COFE2O4 / COO形成的Z形方案异质结的合理反应机理。

著录项

  • 来源
    《Applied Surface Science》 |2019年第30期|584-594|共11页
  • 作者单位

    Univ Trento Dept Phys I-38123 Povo Trento Italy;

    Univ Trento Dept Phys I-38123 Povo Trento Italy;

    Univ Mumbai Dept Phys Mumbai 400098 Maharashtra India|Univ Mumbai Natl Ctr Nanosci & Nanotechnol Mumbai 400098 Maharashtra India;

    CNR Ist Officina Mat Lab TASC I-34149 Trieste Italy;

    Univ Trento Dept Phys I-38123 Povo Trento Italy;

    Univ Liverpool Sch Engn Liverpool L69 3GH Merseyside England;

    Univ Mumbai Dept Phys Mumbai 400098 Maharashtra India|Univ Mumbai Natl Ctr Nanosci & Nanotechnol Mumbai 400098 Maharashtra India;

    CSIR Natl Inst Interdisciplinary Sci & Technol Mat Sci & Technol Div Thiruvananthapuram 695019 Kerala India;

    Univ Liverpool Sch Engn Liverpool L69 3GH Merseyside England;

    Univ Trento Dept Phys I-38123 Povo Trento Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heterojunctions; Charge-separation; Photo-Fenton; Photocatalysis; Active surface area; 3D-hierarchical nanostructures;

    机译:异功能;电荷分离;光催化;光催化;活性表面积;3D层次纳米结构;

相似文献

  • 外文文献
  • 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