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Exploring the artificially induced nonstoichiometric effect of Li_2RuO_3 as a reactive promoter on electrocatalytic behavior

机译:探讨Li_2Ruo_3作为电催化作用对反应促进剂的人工诱导的非核心作用

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摘要

Understanding the fundamental properties, particularly identifying the independent effect of factors that govern catalytic activities, is crucial to design strategies for synthesizing efficient electrocatalysts. Here, we have explored the independent effect of mixed valence and oxygen defects on the catalytic origin by artificially engineering the stoichiometry of Li2RuO3. On the basis of theoperandoX-ray absorption spectroscopy (XAS) results, we demonstrated that the mixed valence enhanced the redox reversibility of ruthenium ions and the oxygen defects provided more electrocatalytic active sites. Consequently, non-stoichiometric Li(2-x)RuO(3-y)exhibited superior performance for the oxygen reduction reaction (ORR), oxygen evolution reaction (OER) and Zn-air batteries in alkaline media compared to state-of-the-art Pt/C and RuO2. Moreover, the applicability of the nonstoichiometric effect in various electrocatalytic reactions was systematically verified. Therefore, artificially induced non-stoichiometry is a feasible strategy to design efficient multifunctional electrocatalysts and this strategy can be applied to general metal oxide electrocatalysts for various electrocatalytic reactions.
机译:了解基本属性,特别是确定治理催化活动的因素的独立效果,对设计合成有效电催化剂的策略至关重要。在这里,我们通过人工工程通过人工工程来探讨了混合价和氧缺陷对催化来源的独立效果。基于TheOperandox射线吸收光谱(XAS)结果,我们证明了混合价增强了钌离子的氧化还原可逆性,并且氧缺陷提供了更多的电催化活性位点。因此非化学计量Li(2-x)RuO(3-Y)表现出氧还原反应(ORR),碱性介质中的氧气进化反应(OER)和Zn空气电池的优异性能,而与状态相比-Art pt / c和ruo2。此外,系统验证了在各种电催化反应中的非计量效应的适用性。因此,人工诱导的非化学计量是设计有效多功能电催化剂的可行策略,并且该策略可以应用于各种电催化反应的一般金属氧化物电催化剂。

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  • 来源
    《Energy & environmental science》 |2020年第7期|2167-2177|共11页
  • 作者单位

    Ulsan Natl Inst Sci & Technol UNIST Sch Energy & Chem Engn 50 UNIST Gil Ulsan 44919 South Korea;

    Ulsan Natl Inst Sci & Technol UNIST Sch Energy & Chem Engn 50 UNIST Gil Ulsan 44919 South Korea;

    Ulsan Natl Inst Sci & Technol UNIST Sch Energy & Chem Engn 50 UNIST Gil Ulsan 44919 South Korea|Georgia Inst Technol Sch Mat Sci & Engn Atlanta GA 30332 USA;

    Ulsan Natl Inst Sci & Technol UNIST Sch Energy & Chem Engn 50 UNIST Gil Ulsan 44919 South Korea;

    Pohang Accelerator Lab PAL Beamline Res Div Pohang 790784 South Korea;

    Ulsan Natl Inst Sci & Technol UNIST Sch Energy & Chem Engn 50 UNIST Gil Ulsan 44919 South Korea|Univ Oxford Dept Mat Parks Rd Oxford OX1 3PH England;

    Pohang Accelerator Lab PAL Beamline Res Div Pohang 790784 South Korea;

    Ulsan Natl Inst Sci & Technol UNIST Sch Energy & Chem Engn 50 UNIST Gil Ulsan 44919 South Korea;

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