Synthesis of a g-C sub(3)N sub(4)-sensitized and NaNbO sub(3)-substrated II-type heterojunction with enhanced photocatalytic degradation activity
The g-C sub(3)N sub(4) (CN) sensitized and NaNbO sub(3) (NN) substrated II-type heterojunction (g-C sub(3)N sub(4)/NaNbO sub(3)) is prepared by a solid phase calcination method with urea and NN. The layered CN is anchoring on the surface of the cubic NN. The samples are characterized by XPS, UV-vis...
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Veröffentlicht in: | CrystEngComm 2015-06, Vol.17 (24), p.4575-4583 |
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Sprache: | eng |
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Zusammenfassung: | The g-C sub(3)N sub(4) (CN) sensitized and NaNbO sub(3) (NN) substrated II-type heterojunction (g-C sub(3)N sub(4)/NaNbO sub(3)) is prepared by a solid phase calcination method with urea and NN. The layered CN is anchoring on the surface of the cubic NN. The samples are characterized by XPS, UV-vis spectroscopy, FE-SEM, XRD and FT-IR. The photodegradation mechanism of RhB solutions under visible light irradiation is investigated. Electron paramagnetic resonance (ESR) and radical scavenger experiments reveal that the main active species is O sub(2)&z.rad; super(-) and OH&z.rad; also plays a role in the photodegradation process. Compared with pure CN, the CN/NN hybrid materials display excellent photocatalytic activity for rhodamine b (RhB), methyl orange (MO) and tetracycline (TC) degradation under visible-light irradiation. The 8-CN/NN sample shows the highest degradation rate (1.888 h super(-1)) and it is 2.7 times higher than that of pure CN (0.697). The photodegradation of RhB, MO and TC by all the CN/NN photocatalysts fits to pseudo first order kinetics. The photocatalysts also possess great stability. The exploration of the CN/NN photocatalyst is significant for the further practical application of photocatalysis in wastewater treatment. |
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ISSN: | 1466-8033 |
DOI: | 10.1039/c5ce00622h |