赤铁矿
纳米线
材料科学
兴奋剂
掺杂剂
氧化锡
纳米技术
纳米棒
化学工程
光电流
光电子学
冶金
工程类
作者
Mingyang Li,Yi Yang,Yichuan Ling,Weitao Qiu,Fuxin Wang,Tianyu Liu,Yu Song,Xiaoxia Liu,Ping‐Ping Fang,Yexiang Tong,Yat Li
出处
期刊:Nano Letters
[American Chemical Society]
日期:2017-03-25
卷期号:17 (4): 2490-2495
被引量:224
标识
DOI:10.1021/acs.nanolett.7b00184
摘要
High-temperature activation has been commonly used to boost the photoelectrochemical (PEC) performance of hematite nanowires for water oxidation, by inducing Sn diffusion from fluorine-doped tin oxide (FTO) substrate into hematite. Yet, hematite nanowires thermally annealed at high temperature suffer from two major drawbacks that negatively affect their performance. First, the structural deformation reduces light absorption capability of nanowire. Second, this "passive" doping method leads to nonuniform distribution of Sn dopant in nanowire and limits the Sn doping concentration. Both factors impair the electrochemical properties of hematite nanowire. Here we demonstrate a silica encapsulation method that is able to simultaneously retain the hematite nanowire morphology even after high-temperature calcination at 800 °C and improve the concentration and uniformity of dopant distribution along the nanowire growth axis. The capability of retaining nanowire morphology allows tuning the nanowire length for optimal light absorption. Uniform distribution of Sn doping enhances the donor density and charge transport of hematite nanowire. The morphology and doping engineered hematite nanowire photoanode decorated with a cobalt oxide-based oxygen evolution reaction (OER) catalyst achieves an outstanding photocurrent density of 2.2 mA cm–2 at 0.23 V vs Ag/AgCl. This work provides important insights on how the morphology and doping uniformity of hematite photoanodes affect their PEC performance.
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