氧气
活性氧
材料科学
单线态氧
催化作用
激进的
光化学
化学工程
超氧化物
纳米技术
碳纤维
金属
活性材料
无机化学
极限氧浓度
悠氧
化学物理
氧化还原
作者
Pin Lyu,Jian Zhu,Chongchong Han,Lei Qiang,Linlin Zhang,Bingbao Mei,Jiehong He,Xiaoyan Liu,Zhenfeng Bian,Hexing Li
标识
DOI:10.1021/acsami.0c19414
摘要
The effective activation and utilization of O2 have always been the focus of scientists because of its wide applications in catalysis, organic synthesis, life and medical science. Here, a novel method for activating O2 spontaneously via interfacial oxygen vacancies on carbon-coated TiO2-x to generate reactive oxygen species (ROS) with versatile applications is reported. The interfacial oxygen vacancies can be stabilized by the carbon layer and hold its intrinsic properties for spontaneous oxygen activation without light irradiation, while common surface oxygen vacancies on TiO2-x are always consumed by the capture of H2O to form the surface hydroxyls. Thus, O2 absorbed at the interface of carbon and TiO2-x can be directly activated into singlet oxygen (1O2) or superoxide radicals (·O2-), confirmed both experimentally and theoretically. These reactive oxygen species exhibit excellent performance in oxidation reactions and inhibition of MCF-7 cancer cells, providing new insight into the effective utilization of O2 via oxygen vacancies on metal oxides.
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