Nanowire morphology control in Sb metal-derived antimony selenide photocathodes for solar water splitting

被引:0
|
作者
Wang, Zhenbin [1 ]
Gan, Yongping [1 ]
Service, Erin [1 ]
Adams, Pardis [1 ]
Moehl, Thomas [1 ]
Niu, Wenzhe [1 ,2 ]
Tilley, S. David [1 ]
机构
[1] Univ Zurich, Dept Chem, Winterthurerstr 190, CH-8057 Zurich, Switzerland
[2] Ecole Polytech Fed Lausanne, Lab Photon & Interfaces, Inst Chem Sci & Engn, CH-1015 Lausanne, Switzerland
基金
瑞士国家科学基金会;
关键词
THIN-FILM; SB2SE3; PHOTOCATHODES; PERFORMANCE; EVOLUTION;
D O I
10.1039/d4ta07389d
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We report a facile method to enhance the photoelectrochemical (PEC) performance of Sb2Se3 photocathodes by controlling the growth of bilayer Sb2Se3 consisting of vertically oriented nanorods on a compact Sb2Se3 layer. Sb2Se3 thin films with controllable nanorod diameters were achieved by manipulating the substrate temperatures during metallic Sb thin film deposition. The lower temperature-derived Sb2Se3 photocathode, with a larger nanorod diameter (202 +/- 48 nm), demonstrated a photocurrent density of -15.2 mA cm-2 at 0 VRHE and an onset potential of 0.21 VRHE. In contrast, the higher temperature-derived Sb2Se3 photocathode, with a smaller nanorod diameter (124 +/- 28 nm), exhibited an improved photocurrent density of -22.1 mA cm-2 at 0 VRHE and an onset potential of 0.31 VRHE. The enhanced PEC performance is attributed to reduced charge recombination, facilitated by a shorter charge transport path in the [hk0] direction. This study highlights the significance of morphology control in optimizing Sb2Se3 photocathodes, providing insights for future material and device design.
引用
收藏
页码:8416 / 8424
页数:9
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