...
首页> 外文期刊>ACS Omega >Two-Dimensional CdX/C2N (X = S, Se) Heterostructures as Potential Photocatalysts for Water Splitting: A DFT Study
【24h】

Two-Dimensional CdX/C2N (X = S, Se) Heterostructures as Potential Photocatalysts for Water Splitting: A DFT Study

机译:二维CDX / C2N(X = S,SE)异质结构作为水分裂的潜在光催化剂:DFT研究

获取原文
           

摘要

Global environmental issues, in addition to limited fossil fuel resources, are being addressed by quests in search of efficient visible-light-driven water splitting catalysts for hydrogen production. The photocatalytic water splitting activities of CdX/C_(2)N (X = S, Se) heterostructures have been investigated here using hybrid density functional theory calculations. The calculated band gaps of CdS/C_(2)N and CdSe/C_(2)N heterostructures are 1.48 and 2.12 eV, respectively. These are ideal band gap values that make possible harvesting of more visible light from the solar spectrum, which will result in high solar to energy conversion efficiencies. Charge density difference analysis shows that the charge redistributions mainly occur in the interface regions and that the charges transfer from the C_(2)N to CdX layers. It is interesting to note that the CdX/C_(2)N heterostructures possess a type-II band alignment, where the relative band alignment of the C_(2)N and CdX monolayers promotes a spatial separation of the electrons (that resides in C_(2)N) and holes (that resides in CdX). Importantly, the band edges of the heterostructures straddle the water redox potential under different pH conditions. This study demonstrates that the CdS/C_(2)N and CdSe/C_(2)N heterostructures are suitable materials to split water (from various sources) in different ranges of pH values.
机译:除了有限的化石燃料资源外,全球环境问题正在通过寻求高效的可见光驱动的水分裂催化剂进行氢气生产来解决。这里已经使用混合密度官能理论计算研究了CDX / C_(2)N(X = S,SE)异质结构的光催化水分裂活性。 CDS / C_(2)N和CDSE / C_(2)n异质结构的计算带间隙分别为1.48和2.12eV。这些是理想的带隙值,可以采取从太阳频谱的更可见光,这将导致高太阳能转换效率。电荷密度差异分析表明,电荷再分布主要发生在界面区域中,并且电荷从C_(2)n转移到CDX层。值得注意的是,CDX / C_(2)n异质结构具有II型带对准,其中C_(2)N和CDX单层的相对频带对准促使电子的空间分离(其位于C_ (2)n)和孔(在CDX中居住)。重要的是,异质结构的带状边缘在不同的pH条件下跨越水氧化还原电位。该研究表明CDS / C_(2)N和CDSE / C_(2)N异质结构是合适的材料,用于在不同的pH值范围内分离水(来自各种来源)。

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