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Influence of nitrogen doping on the electrocatalytic activity of Ni-incorporated carbon nanofibers toward urea oxidation

机译:氮掺杂对掺Ni碳纳米纤维对尿素氧化的电催化活性的影响

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摘要

Overall, boosting the formation of the active NiOOH layer distinctly improves the electro catalytic activity of nickel-based materials. Moreover, due to the adsorption capacity, the carbonaceous supports improve the electrocatalytic activities of several function materials including nickel. In this manuscript, nitrogen doping is introduced as an effective strategy to enhance formation of the NiOOH active layer on the surface of nickel nanoparticles decorating carbon nanofibers. Typically, addition of urea to the nickel acetate/poly(vinyl alcohol)/water sol-gel leads to obtain nitrogen-doped and nickel-decorated carbon nano fibers after electrospinning the prepared solution and calcination the nanofiber mats under Ar at 750 degrees C. The invoked characterizations including XRD, TEM, SEM and XPS affirmed formation of smooth nitrogen-doped carbon nanofibers decorated by crystalline nickel nanoparticles. Nitrogen doping strongly enhanced the formation of NiOOH active layer on the surface of the metallic nanoparticles which distinctly improved the electrocatalytic activity toward urea oxidation. However, the electrochemical measurements indicated that the content of the urea in the initial electrospun solution should be optimized as the results showed that the best nickel surface activation as well as the maximum observed current density can be achieved when the urea content is kept at 5 wt%. Typically, the observed current densities using 1.0 M urea (in 1 M KOH) were 3.15, 29.7, 13.75, 47.55, 14.13 and 9.85 mA/cm(2) for the nanofibers obtained from electrospun solutions having 0, 1, 2, 5, 7 and 9 wt% urea, respectively. Moreover, the proposed nitrogen doping strategy leads to perform a distinguish decrease in the onset potential of the urea electrooxidation which reduces the required energy for the electrolysis process. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:总体而言,促进活性NiOOH层的形成明显改善了镍基材料的电催化活性。而且,由于吸附能力,含碳载体改善了包括镍在内的几种功能材料的电催化活性。在此手稿中,引入了氮掺杂作为一种有效的策略,以增强装饰碳纳米纤维的镍纳米颗粒表面上NiOOH活性层的形成。通常,将尿素添加到乙酸镍/聚乙烯醇/水溶胶-凝胶中会导致在静电纺丝制备的溶液并在750摄氏度的Ar下煅烧纳米纤维垫后获得氮掺杂和镍修饰的碳纳米纤维。包括XRD,TEM,SEM和XPS在内的调用特征证实了由结晶镍纳米粒子修饰的光滑的氮掺杂碳纳米纤维的形成。氮掺杂强烈地增强了金属纳米颗粒表面上NiOOH活性层的形成,这明显改善了对尿素氧化的电催化活性。然而,电化学测量表明,应优化初始电纺丝溶液中尿素的含量,因为结果表明,当尿素含量保持在5 wt%时,可以获得最佳的镍表面活化以及最大的观察到的电流密度。 %。通常,使用1.0 M尿素(在1 M KOH中)观察到的电流密度分别为3.15、29.7、13.75、47.55、14.13和9.85 mA / cm(2),这些纳米纤维是从具有0、1、2、5,分别为7和9 wt%的尿素。此外,提出的氮掺杂策略导致尿素电氧化的开始电势显着降低,这降低了电解过程所需的能量。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2017年第34期|21741-21750|共10页
  • 作者单位

    Chonbuk Natl Univ, Organ Mat & Fiber Engn Dept, Jeonju 561756, South Korea|Chonbuk Natl Univ, Bionanosyst Engn Dept, Jeonju 561756, South Korea|Menia Univ, Fac Engn, Chem Engn Dept, El Minia, Egypt;

    Chonbuk Natl Univ, Organ Mat & Fiber Engn Dept, Jeonju 561756, South Korea|Chonbuk Natl Univ, Bionanosyst Engn Dept, Jeonju 561756, South Korea;

    Chonbuk Natl Univ, Organ Mat & Fiber Engn Dept, Jeonju 561756, South Korea|Chonbuk Natl Univ, Bionanosyst Engn Dept, Jeonju 561756, South Korea;

    Qatar Univ, Cent Lab Unit, POB 2713, Doha, Qatar;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    N-doped nanofibers; Urea electrooxidation; Nickel-decorated carbon nanofibers; Electrospinning;

    机译:掺氮纳米纤维;尿素电氧化;镍修饰碳纳米纤维;静电纺丝;
  • 入库时间 2022-08-18 00:19:26

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