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Oxygen vacancy enhancing mechanism of nitrogen reduction reaction property in Ru/TiO2 被引量:10

Oxygen vacancy enhancing mechanism of nitrogen reduction reaction property in Ru/TiO2
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摘要 To search the new effective nitrogen reduction reaction(NRR)electrocatalyst is very important for the ammonia-based industry.Herein,we reported the design of a novel NRR electrocatalyst with Ru NPs loaded on oxygen-vacancy TiO2(Ru/TiO2-Vo).Structural characterizations revealed that oxygen vacancy was loaded in the matrix of Ru/TiO2-Vo.Electrocatalytic results indicated that Ru/TiO2-Vo showed good NRR performance(2.11μg h^-1 cm^-2).Contrast tests showed that NRR property of Ru/TiO2-Vo was much better than those of Ru/TiO-12(B)(0.53μg hcm^-2)and Ru/P25(0.42μg h^-1 cm^-2).Furthermore,density functional theory calculation results indicated catalytic mechanism of NRR and rate-determining step(*N2+1/2 H2→*N+*NH)was the potential-determining step with the overpotential requirement of 0.21 V.A combination of electronic structure analysis and catalytic measurement shed light on the synergistic effect of Ru and oxygen vacancy on the NRR performance. To search the new effective nitrogen reduction reaction(NRR) electrocatalyst is very important for the ammonia-based industry. Herein, we reported the design of a novel NRR electrocatalyst with Ru NPs loaded on oxygen-vacancy TiO2(Ru/TiO2-Vo). Structural characterizations revealed that oxygen vacancy was loaded in the matrix of Ru/TiO2-Vo. Electrocatalytic results indicated that Ru/TiO2-Vo showed good NRR performance(2.11 μg h-1 cm-2). Contrast tests showed that NRR property of Ru/TiO2-Vo was much better than those of Ru/TiO-12(B)(0.53 μg hcm-2) and Ru/P25(0.42 μg h-1 cm-2). Furthermore, density functional theory calculation results indicated catalytic mechanism of NRR and rate-determining step(*N2+ 1/2 H2→*N+*NH) was the potential-determining step with the overpotential requirement of 0.21 V.A combination of electronic structure analysis and catalytic measurement shed light on the synergistic effect of Ru and oxygen vacancy on the NRR performance.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第12期144-151,共8页 能源化学(英文版)
基金 supported by the National Natural Science Foundation of China(Nos.21671172,21625604,21776251,21706229and Z86101001) Zhejiang Provincial Natural Science Foundation(No.LR19B010001)
关键词 Nitrogen reduction reaction ELECTROCATALYSIS Oxygen vacancy DFT Nitrogen reduction reaction Electrocatalysis Oxygen vacancy DFT
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