空位缺陷
光电流
光催化
多孔性
介观物理学
化学
铟
可见光谱
氧化物
带隙
Atom(片上系统)
纳米技术
分解水
化学物理
化学工程
催化作用
光化学
材料科学
光电子学
结晶学
凝聚态物理
有机化学
嵌入式系统
工程类
物理
生物化学
计算机科学
作者
Fengcai Lei,Yongfu Sun,Katong Liu,Shan Gao,Liang Liang,Bicai Pan,Yi Xie
摘要
Finding an ideal model for disclosing the role of oxygen vacancies in photocatalysis remains a huge challenge. Herein, O-vacancies confined in atomically thin sheets is proposed as an excellent platform to study the O-vacancy-photocatalysis relationship. As an example, O-vacancy-rich/-poor 5-atom-thick In2O3 porous sheets are first synthesized via a mesoscopic-assembly fast-heating strategy, taking advantage of an artificial hexagonal mesostructured In-oleate complex. Theoretical/experimental results reveal that the O-vacancies endow 5-atom-thick In2O3 sheets with a new donor level and increased states of density, hence narrowing the band gap from the UV to visible regime and improving the carrier separation efficiency. As expected, the O-vacancy-rich ultrathin In2O3 porous sheets-based photoelectrode exhibits a visible-light photocurrent of 1.73 mA/cm(2), over 2.5 and 15 times larger than that of the O-vacancy-poor ultrathin In2O3 porous sheets- and bulk In2O3-based photoelectrodes.
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