首页> 外文期刊>Renewable energy >Synthesis and characterization of bimetallic nickel-cobalt chalcogenides (NiCoSe_2, NiCo_2S_4, and NiCo_2O_4) for non-enzymatic hydrogen peroxide sensor and energy storage: Electrochemical properties dependence on the metal-to-chalcogen composition
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Synthesis and characterization of bimetallic nickel-cobalt chalcogenides (NiCoSe_2, NiCo_2S_4, and NiCo_2O_4) for non-enzymatic hydrogen peroxide sensor and energy storage: Electrochemical properties dependence on the metal-to-chalcogen composition

机译:用于非酶过氧化氢传感器和能量存储的双金属镍钴硫属元素化物(NiCoSe_2,NiCo_2S_4和NiCo_2O_4)的合成和表征:电化学性质取决于金属-硫属元素的组成

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摘要

To understand the application of transition metal based diselenide for electrochemical applications, NiCoSe2 is proposed as an excellent candidate with interesting physical and chemical properties. In this work, we have demonstrated the synthesis of NiCoSe2, NiCo2S4, and NiCo2O4 with different structures by using a simple hydrothermal method and further used as the electrode materials for electrochemical sensor and supercapacitor applications. For the first time, NiCoSe2 was used as a working electrode material to study the electrochemical sensing of hydrogen peroxide (H2O2), and successively compared with the sensing response obtained at NiCo2O4 and NiCo2S4 modified electrodes. Especially, the detailed electrochemical kinetics of NiCo2O4, NiCo2S4, and NiCoSe2 electrodes were comparatively studied. The obtained results clearly indicate an excellent electrocatalytic activity of NiCoSe2 towards the electrochemical sensing of H2O2 than that of NiCo2O4 and NiCo2S4. The NiCoSe2 modified electrode exhibited an ultra-low detection limit (0.03 mu M) and sensitivity (8.46 mu A mu M-1 cm(-2)) of H2O2. Additionally, we reported an excellent specific capacitance (1408.5 Fg(-1)), higher specific surface area (94.81 m(2)/g) and lower charge transfer resistance (R-ct = 0.13 Omega) of NiCoSe2. Finally, we scrutinized that the NiCoSe2 is a promising electrode material for both electrochemical sensor and supercapacitor applications. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了理解基于过渡金属的二硒化物在电化学领域的应用,提出了NiCoSe2作为具有令人感兴趣的物理和化学性质的优秀候选物。在这项工作中,我们已经证明了使用简单的水热法合成具有不同结构的NiCoSe2,NiCo2S4和NiCo2O4的方法,并进一步用作电化学传感器和超级电容器应用的电极材料。 NiCoSe2首次用作工作电极材料,研究过氧化氢(H2O2)的电化学传感,并与NiCo2O4和NiCo2S4修饰电极获得的传感响应进行了比较。特别是,对NiCo2O4,NiCo2S4和NiCoSe2电极的详细电化学动力学进行了比较研究。所获得的结果清楚地表明,NiCoSe2对H2O2的电化学传感具有比NiCo2O4和NiCo2S4优异的电催化活性。 NiCoSe2修饰电极显示出H2O2的超低检测限(0.03μM)和灵敏度(8.46μAμM-1cm(-2))。此外,我们报告了NiCoSe2的优异的比电容(1408.5 Fg(-1)),较高的比表面积(94.81 m(2)/ g)和较低的电荷转移电阻(R-ct = 0.13 Omega)。最后,我们仔细研究了NiCoSe2是用于电化学传感器和超级电容器应用的有前途的电极材料。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2019年第8期|139-151|共13页
  • 作者单位

    Natl Taiwan Univ, Dept Chem Engn, Taipei 10617, Taiwan|Natl Taiwan Univ, Adv Res Ctr Green Mat Sci & Technol, Taipei 10617, Taiwan;

    Natl Taipei Univ Technol, Dept Chem Engn & Biotechnol, Electroanal & Bioelectrochem Lab, Taipei 10608, Taiwan;

    Natl Taipei Univ Technol, Dept Chem Engn & Biotechnol, Electroanal & Bioelectrochem Lab, Taipei 10608, Taiwan;

    Natl Taipei Univ Technol, Dept Chem Engn & Biotechnol, Electroanal & Bioelectrochem Lab, Taipei 10608, Taiwan;

    Natl Taiwan Univ, Dept Chem Engn, Taipei 10617, Taiwan|Natl Taiwan Univ, Adv Res Ctr Green Mat Sci & Technol, Taipei 10617, Taiwan;

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

    Metal chalcogenides; Transition metal selenide; Hydrothermal synthesis; Electrochemical sensor; Hydrogen peroxide; Supercapacitor;

    机译:金属硫属化物;过渡金属硒化物;水热合成;电化学传感器;过氧化氢;超级电容器;

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