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Enhancing Oxygen Evolution Catalytic Performance of Nickel Borate with Cobalt Doping and Carbon Nanotubes

机译:Enhancing Oxygen Evolution Catalytic Performance of Nickel Borate with Cobalt Doping and Carbon Nanotubes

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摘要

Metal borates have recently been recognized as alternative earth-abundant water oxidation catalysts. Herein, we employed solid-state synthesis to prepare a series of NiCo borates, NiaCo_(3-a)(BO3)2, with a Kotoite structure to elucidate the effect of the metal-doping on the water oxidation activity of metal borates. We performed electrocatalytic and photocatalytic studies to reveal that the catalytic activity could be enhanced with cobalt doping and by using carbon nanotubes (CNTs) as the substrate. Ni3B2O6 exhibits an overpotential of 525 mV to reach current densities of 10mAcm~2 in 1 M KOH solution, while it is 355 mV for Co2NiB2O6-CNT@CC. The overpotential is also 100 mV lower than the pure catalyst (Co2NiB2O6@CC, 445 mV). The as-prepared samples exhibit significantly enhanced photocatalytic activities for water oxidation under visible-light irradiation with an increasing cobalt ratio, and an average O2 evolution rate of up to 1822 μmol h~(-1) g~(-1) is obtained for Co3B2O6, which is nearly 1.78, 4.25, and 4.90 times higher than the rates obtained for Co2NiB2O6, CoNi2B2O6, and Ni3B2O6, respectively.
机译:金属硼酸盐最近被认为是选择地球上充足的水氧化催化剂。合成准备一系列的尼科硼酸盐,NiaCo_ (3) (BO3) 2、小藤石结构阐明的metal-doping的效果水氧化的活性金属硼酸盐。electrocatalytic执行,光催化研究表明,催化活性可以增强与钴掺杂和利用碳纳米管作为衬底。展品525 mV的过电压电流密度为10 macm KOH在1 ~ 2米解决方案,虽然355 mVCo2NiB2O6-CNT@CC。mV低于纯催化剂(Co2NiB2O6@CC445 mV)。显著提高光催化活性可见光下的水氧化与越来越比钴辐照,O2进化率平均高达1822μ摩尔h ~ (1) g ~(1)是Co3B2O6获得,这是近1.78、4.25和4.90倍利率获得Co2NiB2O6, CoNi2B2O6,分别Ni3B2O6。

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  • 来源
    《Chemistry Select》 |2023年第7期|共8页
  • 作者单位

    Department of Chemistry, Faculty of Arts & Sciences, Recep Tayyip Erdogan University, 53100, Rize, Turkey;

    Department of Chemistry, Faculty of Sciences, Bilkent University, 06800, Ankara, Turkey;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
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