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Effect of sulfur vacancies on the nitrogen photofixation performance of ternary metal sulfide photocatalysts

机译:影响硫氮的空缺photofixation三元金属的性能硫化物催化剂

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摘要

Nitrogen fixation is the second most important chemical process in nature next to photosynthesis. Herein, we report a novel ternary metal sulfide photocatalyst Zn0.1Sn0.1Cd0.8S with outstanding nitrogen photofixation ability under visible light. Characterization results indicate that the actual atomic ratio of the as-prepared ternary metal sulfide is Zn : Sn : Cd : S of 0.11 : 0.12 : 0.88: 1.12 with many sulfur vacancies, not a mixture of ZnS, SnS2 and CdS. The sulfur vacancies on Zn0.1Sn0.1Cd0.8S not only serve as active sites to adsorb and activate N-2 molecules but also promote interfacial charge transfer from Zn0.1Sn0.1Cd0.8S to N-2 molecules, thus significantly improving the nitrogen photofixation ability. The other three as-prepared ternary metal sulfides with sulfur vacancies fabricated via the same method exhibit nitrogen photofixation ability, confirming the significantly important role of sulfur vacancies in the nitrogen photofixation process.
机译:固氮作用是第二个最重要的化学过程在自然界旁边光合作用。金属硫化物光催化剂Zn0.1Sn0.1Cd0.8S杰出的氮photofixation能力可见光。实际的原子比的好了三元金属硫化物是锌:Sn: Cd: 0.11: 0.12: 0.88: 1.12与许多硫磺空缺,不是硫化锌的混合物,SnS2和cd。Zn0.1Sn0.1Cd0.8S不仅作为职位空缺活跃网站吸附并激活2分子但也促进界面电荷转移Zn0.1Sn0.1Cd0.8S n -分子,因此显著改善氮photofixation能力。好了三元金属硫化物硫通过相同的方法制造的空缺展览氮photofixation能力,确认硫空缺显著重要的角色在氮photofixation过程。

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