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Maximizing the visible light photoelectrochemical activity of B/N-doped anatase TiO_2 microspheres with exposed dominant {001} facets 被引量:2
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作者 Xingxing Hong1 2 +11 位作者 Yuyang Kang1 2 Chao Zhen1 Xiangdong Kang1 Li-Chang Yin1 John TS Irvine3 Lianzhou Wang4 gang liu1 2 Hui-Ming Cheng1 5 6 《Science China Materials》 SCIE EI CSCD 2018年第6期831-838,共8页
Anatase TiO2 microspheres with exposed dominant {001} facets were doped with interstitial boron to have a concentration gradient with the maximum concentration at the surface. They were then further doped with substit... Anatase TiO2 microspheres with exposed dominant {001} facets were doped with interstitial boron to have a concentration gradient with the maximum concentration at the surface. They were then further doped with substitutional nitrogen by heating in an ammonia atmosphere at different temperatures from 440 to 560℃ to give surface N concentrations ranging from 7.03 to 15.47 at%. The optical absorption, atomic and electronic structures and visible-light photoelectrochemical water oxidation activity of these materials were investigated. The maximum activity of the doped TiO2 was achieved at a nitrogen doping temperature of 520℃ that gave a high absorbance over the whole visible light region but with no defect-related background absorption. 展开更多
关键词 PHOTOELECTROCHEMISTRY red TiO2 water splitting doping
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