首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >2D-structured V-doped Ni(Co,Fe) phosphides with enhanced charge transfer and reactive sites for highly efficient overall water splitting electrocatalysts
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2D-structured V-doped Ni(Co,Fe) phosphides with enhanced charge transfer and reactive sites for highly efficient overall water splitting electrocatalysts

机译:2D结构的V掺杂Ni(CO,Fe)磷化磷酸,具有增强的电荷转移和高效整体水分裂电催化剂的反应部位

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摘要

2-D Ni alloy phosphide catalysts are of great interest due to their strong bond strength to reaction intermediates and numerous active sites for alkaline overall water splitting (OWS) reactions. However, the limitations of hydrogen evolution reaction (HER) activity and electrical conductivity significantly lower the OWS activity compared to noble metal catalysts. To overcome this problem, V-doping of 2D Ni(Co,Fe) phosphide was performed to increase the electrical conductivity and catalytic activity by tuning the electron density of the active sites. The synthesized NiCoVP had a low Tafel slope of 30 mV dec(-1) and a reduced overpotential of 42 mV compared to NiCoP (75 mV), which has high stability as an alkaline HER catalyst, yielding 10 mA cm(-2). The charge transfer resistance also decreased from 8.8 omega (NiCoP) to 7.1 omega (NiCoVP). As an alkaline oxygen evolution reaction (OER) catalyst, NiFeVP showed a low overpotential of 234 mV to generate 10 mA cm(-2) compared to NiFeP (249 mV) with a Tafel slope of 34.4 mV dec(-1). V doping reduced the charge transfer resistance from 3.6 omega (NiFeP) to 1.2 omega (NiFeVP). The OWS system combining NiCoVP-NiFeVP required 1.50 V for 10 mA cm(-2), which is the lowest among the transition metal-based phosphide catalysts reported so far. This marked improvement in alkaline OWS activity through V doping was also proven by the density functional theory (DFT) calculation results of high affinity to *OH, which enhances water dissociation for the HER and strong metal-O covalence bonds for the OER.
机译:二维磷化镍合金催化剂因其与反应中间体的强键合强度和碱性全水裂解(OWS)反应的众多活性中心而备受关注。然而,与贵金属催化剂相比,析氢反应(HER)活性和导电性的限制显著降低了OWS活性。为了克服这个问题,我们对2D Ni(Co,Fe)磷化物进行V掺杂,通过调节活性中心的电子密度来提高电导率和催化活性。合成的NiCoVP具有30 mV dec(-1)的低塔菲尔斜率,与作为碱性HER催化剂具有高稳定性的NiCoP(75 mV)相比,降低了42 mV的过电位,产生10 mA cm(-2)。电荷转移电阻也从8.8Ω(NiCoP)下降到7.1Ω(NiCoVP)。作为一种碱性析氧反应(OER)催化剂,与Tafel斜率为34.4 mV dec(-1)的NiFeP(249 mV)相比,NiFeVP显示出234 mV的低过电位以产生10 mA cm(-2)。V掺杂使电荷转移电阻从3.6Ω(NiFeP)降低到1.2Ω(NiFeVP)。结合NiCoVP-NiFeVP的OWS系统在10 mA cm(-2)下需要1.50 V,这是迄今为止报道的过渡金属基磷化催化剂中最低的。通过V掺杂,碱性OWS活性的显著改善也被密度泛函理论(DFT)的计算结果所证明,该理论对*OH具有很高的亲和力,这增强了HER的水离解和OER的强金属-O共价键。

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    Pohang Univ Sci &

    Technol POSTECH Dept Chem Engn Surface Chem Lab Energy Elect Mat Pohang 37673 South Korea;

    Pohang Univ Sci &

    Technol POSTECH Dept Chem Engn Computat Catalysis &

    Emerging Mat Lab Pohang 37673 South Korea;

    Pohang Univ Sci &

    Technol POSTECH Dept Chem Engn Surface Chem Lab Energy Elect Mat Pohang 37673 South Korea;

    Pohang Univ Sci &

    Technol POSTECH Dept Chem Engn Surface Chem Lab Energy Elect Mat Pohang 37673 South Korea;

    Pohang Univ Sci &

    Technol POSTECH Dept Chem Engn Surface Chem Lab Energy Elect Mat Pohang 37673 South Korea;

    Pohang Univ Sci &

    Technol POSTECH Dept Chem Engn Computat Catalysis &

    Emerging Mat Lab Pohang 37673 South Korea;

    Pohang Univ Sci &

    Technol POSTECH Dept Chem Engn Surface Chem Lab Energy Elect Mat Pohang 37673 South Korea;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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