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首页> 外文期刊>Electrochimica Acta >Alginate derived Co3O4/Co nanoparticles decorated in N-doped porous carbon as an efficient bifunctional catalyst for oxygen evolution and reduction reactions
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Alginate derived Co3O4/Co nanoparticles decorated in N-doped porous carbon as an efficient bifunctional catalyst for oxygen evolution and reduction reactions

机译:藻酸盐衍生的CO3O4 / CO纳米颗粒以N掺杂多孔碳装饰为有效的双官能催化剂,用于氧气进化和还原反应

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Fabricating high-performance and low-cost bifunctional electrocatalysts for both oxygen evolution and reduction reactions is vital for the practical application of renewable energy conversion. Herein, a hybrid of Co3O4/Co active species incorporated in N-doped porous carbon matrix, denoted as Co3O4/Co-NPC, has been prepared using a scalable and facile method involving the carbonization of alginate composite after a Co ion exchange with sustainable seaweed biomass. The 3D Co3O4/Co-NPC exhibits good bifunctional oxygen electrocatalytic performance in alkaline medium. The proposed catalyst gives the smaller onset potential (1.450 V vs. RHE) and overpotential (277 mV) at 10 mA cm(-2) current density, indicating a superior oxygen evolution reaction activity to commercial IrO2 catalyst. It also performs the excellent oxygen reduction catalytic activity with larger onset potential (0.91 V vs. RHE), more positive half wave potential (0.806 V vs. RHE) and bigger diffusion-limiting current density (-5.86 mA cm(-2) at 0.4 V). The Co3O4/Co-NPC hybrid experiences an almost ideal 4e process with better long-term stability and anti-methanol ability than commercial Pt/C catalyst in 0.1 M KOH. The prominent bifunctional activity of Co3O4/Co-NPC can be due to the synergistic effects of the well dispersed Co3O4/Co active species and N-doped porous carbon nanostructure. (c) 2018 Elsevier Ltd. All rights reserved.
机译:为氧气进化和还原反应制造高性能和低成本的双功能电催化剂对于可再生能源转化的实际应用至关重要。在此,用涉及在与可持续海藻的CO离子交换之后碳化复合物的可伸缩和容易的方法制备掺入N掺杂多孔碳基质中的CO 3 O 4 / CO活性物质的CO 3 O 4 / CO活性物质的杂交物。生物质。 3D CO3O4 / CO-NPC在碱性培养基中表现出良好的双官能氧电催化性能。所提出的催化剂以10mA cm(-2)电流密度为较小的发病电位(1.450V与RHE)和过电位(277mV),表明在商业IRO2催化剂中优异的氧气演化反应活性。它还具有具有较大发作潜力(0.91V与RHE)的优异的氧还原催化活性,更高的半波电位(0.806V与RHE)和更大的扩散限流电流密度(-5.86 mA cm(-2) 0.4 V)。 CO3O4 / CO-NPC杂交机经历了几乎理想的4E过程,具有比0.1M KOH在0.1M KOH中的商业Pt / C催化剂更好的长期稳定性和抗甲醇能力。 Co3O4 / Co-NPC的突出双官能活性可以是由于井分散的CO3O4 / CO活性物质和N掺杂多孔碳纳米结构的协同效应。 (c)2018年elestvier有限公司保留所有权利。

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