赤铁矿
分解水
材料科学
光电流
制氢
可逆氢电极
化学工程
氢
纳米棒
光催化
电极
纳米颗粒
纳米技术
氧化物
光电化学电池
纳米结构
光电子学
半导体
异质结
电化学
催化作用
冶金
工作电极
物理化学
化学
工程类
有机化学
生物化学
作者
Peng Wang,Degao Wang,Jun Lin,Xiaolong Li,Peng Cheng,Xingyu Gao,Qing Huang,Jianqiang Wang,Hongjie Xu,Chunhai Fan
摘要
Nanostructured hematite photoanodes have been intensively studied in photoelectrochemical (PEC) water splitting for sustainable hydrogen production. Whereas many previous efforts have been focused on doping elements in nanostructured hematite (α-Fe2O3), we herein demonstrated an alternative approach to enhance the PEC performance by exploiting intrinsic nanostructuring properties of hematite. We found that the introduction of lattice defects effectively decreased the flatband potential and increased the charge transport mobility of nanostructured hematite, hence enhance the light harvest for more efficient hydrogen production via PEC. The nanostructured hematite photoanodes with lattice defects yielded water-splitting photocurrent density of 1.2 mA/cm2 at 1.6 V vs reversible hydrogen electrode (RHE), which excelled defect-free ones by approximately 1.5 folds. This study thus provides a new strategy for finely tuning properties of nanostructured hematite photoanodes and enhancing the water-splitting ability of PEC.
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