| Literature DB >> 26997545 |
Yu Huang1,2, Wei Wang1, Qian Zhang1, Jun-ji Cao1,2, Ru-jin Huang1,2, Wingkei Ho3, Shun Cheng Lee4.
Abstract
Exploring tEntities:
Year: 2016 PMID: 26997545 PMCID: PMC4807223 DOI: 10.1038/srep23435
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1(a) Schematic of the fabrication of BOC-based heterojunctions. (b) XRD patterns of the as-prepared samples.
Figure 2Morphological characterization of the as-prepared samples.
(a–d) SEM, (e–h) low-magnification, and (i–l) HR-TEM images of (BiO)2CO3, BOC-400, BOC-450, and Bi2O3, respectively. (m) SEM image of BOC-450 heterojunction and the corresponding (n–p) elemental X-ray mapping for bismuth, carbon, and oxygen elements.
Figure 3High-resolution XPS spectra of (BiO)2CO3, BOC-400, BOC-450, and α-Bi2O3 samples.
(a) Bi 4f, (b) O 1s, and (c) C 1s.
Figure 4Optical absorption and photocatalytic property of the as-prepared samples.
(a) UV–visible diffuse reflectance spectra of the as-prepared samples. The insets show photos of the sample color. (b) Photocatalytic activities of (BiO)2CO3, BOC-400, BOC-450, and Bi2O3 and the mechanical mixture composed of 54.99% (BiO)2CO3 and 45.01% Bi2O3 under solar light irradiation for NO removal. (c) Recycling property of the composite photocatalyst BOC-400 under solar light irradiation.
Figure 5(a) Room-temperature PL spectra of the as-prepared samples. (b) Photocurrent plot of (BiO)2CO3 and BOC-400 photoeletrodes.
Figure 6(a) Schematic of the energy bands of (BiO)2CO3 and Bi2O3 and the transfer of photo-generated charges in BOC-based heterojunctions under simulated solar light (λ > 290 nm) irradiation. (b) DMPO-ESR spin-trapping spectra of (BiO)2CO3, BOC-400, BOC-450, and Bi2O3 for the detection of hydroxyl radicals (⋅OH) in aqueous solution under UV light irradiation.