首页> 外文期刊>Physical chemistry chemical physics: PCCP >A hybrid density functional study on the visible light photocatalytic activity of (Mo,Cr) N codoped KNbO3
【24h】

A hybrid density functional study on the visible light photocatalytic activity of (Mo,Cr) N codoped KNbO3

机译:(Mo,Cr)N共掺杂的KNbO3可见光光催化活性的混合密度泛函研究

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

To improve the photocatalytic performance of KNbO3 for the decomposition of water into hydrogen and oxygen, the electronic structure of KNbO3 should be modified to have a suitable bandgap with band edge positions straddling the water redox level so as to sufficiently absorb visible light. Hybrid density functional theory has been used to calculate the electronic structures of pure, N-, Mo-, and Cr-monodoped, and Mo- Nand Cr-N codoped KNbO3. In particular, the influence of the relative positions of Mo- Nor Cr-N codopants on the electronic structure of KNbO3 is discussed in detail to account for the possible difference in the photocatalytic activity of the codoped samples prepared by different experimental techniques. The defect formation energy calculations indicate that a N-doped system is difficult to form under any conditions and the codoped systems are energetically favorable under Nb-poor and O-rich conditions. It is interesting to find that the effective bandgap and stability for codoped systems decrease with the increase of the dopant concentration and/or the distance between dopants. Furthermore, the suitable bandgap and band edge position with respect to the water redox level make the Mo-N codoped systems good candidates for visible light photocatalytic decomposition of water to generate hydrogen.
机译:为了提高KNbO3将水分解为氢和氧的光催化性能,应修改KNbO3的电子结构,使其具有合适的带隙,其能带边缘位置跨越水氧化还原能级,从而充分吸收可见光。混合密度泛函理论已被用于计算纯,N-,Mo-和Cr-单掺杂以及Mo-N和Cr-N共掺杂的KNbO3的电子结构。特别地,详细讨论了Mo-Nor Cr-N掺杂剂的相对位置对KNbO3电子结构的影响,以说明通过不同实验技术制备的共掺杂样品的光催化活性可能存在差异。缺陷形成能的计算表明,在任何条件下都难以形成N掺杂体系,而在Nb贫和O丰富的条件下,共掺杂体系在能量上是有利的。有趣的是,共掺杂体系的有效带隙和稳定性随掺杂剂浓度和/或掺杂剂之间距离的增加而降低。此外,相对于水氧化还原水平的合适的带隙和带边缘位置使得Mo-N共掺杂体系成为可见光光催化分解水以产生氢的良好候选者。

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