MXenes公司
分解水
表面改性
材料科学
带隙
纳米技术
半导体
光催化
化学物理
光电子学
化学
物理化学
催化作用
生物化学
作者
Ismail Ibrahim,Safwat Abdel‐Azeim,Ahmed M. El‐Nahas,Oliver Kühn,Chan‐Yeup Chung,Ahmed A. Elzatahry,Mohamed F. Shibl
标识
DOI:10.1021/acs.jpcc.2c03622
摘要
Hydrogen is a significantly advantageous clean and sustainable energy carrier over other energy sources. Therefore, hydrogen production using water-splitting technology is a promising strategy as a clean source of energy. In this work, we computationally explored the effect of different surface functionalization on the structural, electronic, and optical properties of Cr2CT2 MXenes (T = F, Cl, H, and OH) for water-splitting applications. The pure functionalization resulted in antiferromagnetic (AFM) spin-unpolarized MXenes, while the mixed functionalization induced asymmetric AFM semiconductor formation. A tunable band gap size is achievable under different functionalization of Cr2CT2 MXenes. Most of the functionalized Cr2CT2 MXenes display band gaps in the visible range with band edge alignment appropriate for water-splitting reactions. In addition, an indirect band gap characteristic is observed for some of the functionalized MXenes, which is beneficial for the spatial charge pair separation and migration. The results presented herein enrich our understanding of the optoelectronic properties of potential functionalized MXenes as photocatalysts for water-splitting reactions and inspire experimentalists to find the suitable MXene candidate for such applications.
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