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Enhanced Visible-Light Photocatalytic Performance of SAPO-5-Based g-C3N4 Composite for Rhodamine B (RhB) Degradation

机译:SAPO-5-基g-C3N4复合材料对可见罗丹明B(RhB)降解的可见光催化性能增强。

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摘要

Novel visible-light responded aluminosilicophosphate-5 (SAPO-5)/g-C N composite has been easily constructed by thermal polymerization for the mixture of SAPO-5, NH Cl, and dicyandiamide. The photocatalytic activity of SAPO-5/g-C N is evaluated by degrading RhB (30 mg/L) under visible light illumination (λ > 420 nm). The effects of SAPO-5 incorporation proportion and initial RhB concentration on the photocatalytic performance have been discussed in detail. The optimized SAPO-5/g-C N composite shows promising degradation efficiency which is 40.6% higher than that of pure g-C N . The degradation rate improves from 0.007 min to 0.022 min , which is a comparable photocatalytic performance compared with other g-C N -based heterojunctions for dye degradation. The migration of photo-induced electrons from g-C N to the Al site of SAPO-5 should promote the photo-induced electron-hole pairs separation rate of g-C N efficiently. Furthermore, the redox reactions for RhB degradation occur on the photo-induced holes in the g-C N and Al sites in SAPO-5, respectively. This achievement not only improves the photocatalytic activity of g-C N efficiently, but also broadens the application of SAPOs in the photocatalytic field.
机译:新型的可见光响应的铝硅磷酸盐-5(SAPO-5)/ g-C N复合材料已经很容易通过热聚合反应制成SAPO-5,NH Cl和双氰胺的混合物。通过在可见光(λ> 420 nm)下降解RhB(30 mg / L)评估SAPO-5 / g-C N的光催化活性。详细讨论了SAPO-5掺入比例和初始RhB浓度对光催化性能的影响。优化的SAPO-5 / g-C N复合材料显示出有希望的降解效率,比纯g-C N高40.6%。降解速度从0.007分钟提高到0.022分钟,与其他基于g-C N的异质结在染料降解方面的光催化性能相当。光致电子从g-C N向SAPO-5的Al位点的迁移应有效地促进g-C N的光致电子-空穴对分离速率。此外,RhB降解的氧化还原反应分别发生在SAPO-5中g-C N和Al位点的光诱导空穴上。这一成就不仅有效地提高了g-C N的光催化活性,而且拓宽了SAPO在光催化领域的应用。

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