材料科学
光电流
光电子学
等离子体子
贵金属
分解水
异质结
带隙
光催化
可见光谱
纳米技术
金属
催化作用
化学
生物化学
冶金
作者
Sheng Zeng,Triratna Muneshwar,Saralyn Riddell,Ajay P. Manuel,Ehsan Vahidzadeh,Ryan Kisslinger,Pawan Kumar,Kazi M. Alam,Alexander E. Kobryn,Sergey Gusarov,Ken Cadien,Karthik Shankar
出处
期刊:Catalysts
[MDPI AG]
日期:2021-11-14
卷期号:11 (11): 1374-1374
被引量:24
标识
DOI:10.3390/catal11111374
摘要
The lack of active, stable, earth-abundant, and visible-light absorbing materials to replace plasmonic noble metals is a critical obstacle for researchers in developing highly efficient and cost-effective photocatalytic systems. Herein, a core–shell nanotube catalyst was fabricated consisting of atomic layer deposited HfN shell and anodic TiO2 support layer with full-visible regime photoactivity for photoelectrochemical water splitting. The HfN active layer has two unique characteristics: (1) A large bandgap between optical and acoustic phonon modes and (2) No electronic bandgap, which allows a large population of long life-time hot carriers, which are used to enhance the photoelectrochemical performance. The photocurrent density (≈2.5 mA·cm−2 at 1 V vs. Ag/AgCl) obtained in this study under AM 1.5G 1 Sun illumination is unprecedented, as it is superior to most existing plasmonic noble metal-decorated catalysts and surprisingly indicates a photocurrent response that extends to 730 nm. The result demonstrates the far-reaching application potential of replacing active HER/HOR noble metals such as Au, Ag, Pt, Pd, etc. with low-cost plasmonic ceramics.
科研通智能强力驱动
Strongly Powered by AbleSci AI