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ZnCr2S4: Highly effective photocatalyst converting nitrate into N2 without over-reduction under both UV and pure visible light

机译:ZnCr2S4:高效的光催化剂可将硝酸盐转化为N2在紫外线和纯可见光下均不会过度还原

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摘要

We propose several superiorities of applying some particular metal sulfides to the photocatalytic nitrate reduction in aqueous solution, including the high density of photogenerated excitons, high N2 selectivity (without over-reduction to ammonia). Indeed, ZnCr2S4 behaved as a highly efficient photocatalyst, and with the assistance of 1 wt% cocatalysts (RuOx, Ag, Au, Pd, or Pt), the efficiency was greatly improved. The simultaneous loading of Pt and Pd led to a synergistic effect. It offered the highest nitrate conversion rate of ~45 mg N/h together with the N2 selectivity of ~89%. Such a high activity remained steady after 5 cycles. The optimal apparent quantum yield at 380 nm was 15.46%. More importantly, with the assistance of the surface plasma resonance effect of Au, the visible light activity achieved 1.352 mg N/h under full arc Xe-lamp, and 0.452 mg N/h under pure visible light (λ > 400 nm). Comparing to the previous achievements in photocatalytic nitrate removal, our work on ZnCr2S4 eliminates the over-reduction problem, and possesses an extremely high and steady activity under UV-light, as well as a decent conversion rate under pure visible light.
机译:我们提出了将某些特定的金属硫化物应用于水溶液中光催化硝酸盐还原的几种优势,包括高密度的光生激子,高的N2选择性(不会过度还原成氨)。确实,ZnCr2S4表现为高效的光催化剂,在1 wt%助催化剂(RuOx,Ag,Au,Pd或Pt)的辅助下,效率得到了极大的提高。 Pt和Pd的同时加载导致协同作用。它提供最高的硝酸盐转化率〜45μmgN / h,同时具有约89%的N2选择性。这样高的活性在5个循环后保持稳定。 380 nm处的最佳表观量子产率为15.46%。更重要的是,借助金的表面等离子体共振效应,在全弧氙灯下可见光活性达到1.352 N / h,在纯可见光(λ> 400 nm)下达到0.452 N / h。与以前在光催化硝酸盐去除方面的成就相比,我们在ZnCr2S4上的研究消除了过度还原的问题,在紫外线下具有极高且稳定的活性,在纯可见光下的转换率也很高。

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