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首页> 外文期刊>RSC Advances >Low loaded palladium nanoparticles on ethylenediamine-functionalized cellulose as an efficient catalyst for electrochemical hydrogen production
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Low loaded palladium nanoparticles on ethylenediamine-functionalized cellulose as an efficient catalyst for electrochemical hydrogen production

机译:乙二胺官能化纤维素上的低负载钯纳米粒子作为电化学氢生产的有效催化剂

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摘要

In this study, for the first time, a carbon paste electrode (CPE) was modified with palladium nanoparticles supported on ethylenediamine-functionalized cellulose (PdNPs@EDAC-CPE), and its performance for electrocatalytic hydrogen production was examined. Field emission scanning electron microscopy (FESEM) and energy-dispersive X-ray spectroscopy (EDX) were used to study the morphology and structure of PdNPs@EDAC, respectively. Electrochemical characterizations were performed using cyclic voltammetry (CV), linear sweep voltammetry (LSV), chronoamperometry (CA) and electrochemical impedance spectroscopy (EIS). To optimize conditions, the influence of some parameters including the amounts of PdNPs@EDAC and binder in the electrode composition and the electrolyte type and its pH were examined on the hydrogen production process. Comparison of the proposed electrode with the CPE, CPE modified with functionalized cellulose (EDAC-CPE) and CPE modified with Pd (Pd-CPE) showed that PdNPs@EDAC-CPE has the best performance. The proposed electrode with the very low loaded Pd includes several advantages such as using cellulose as a biodegradable polymer, low cost, very good performance and ease of preparation on a large scale that could be a perfect candidate for high-purity electrocatalytic hydrogen production.
机译:在这项研究中,首次用负载在乙二胺官能化纤维素(PDNPS @ EDAC-CPE)上的钯纳米颗粒改性碳糊电极(CPE),检查其对电催化氢产生的性能。场发射扫描电子显微镜(FESEM)和能量分散X射线光谱(EDX)分别用于研究PDNPS @ EDAC的形态和结构。使用循环伏安法(CV),线性扫描伏安法(LSV),计时率(CA)和电化学阻抗光谱(EIS)进行电化学表征。为了优化条件,在氢气生产过程上检查包括电极组合物中的PDNPS @ EDAC和粘合剂的量的一些参数的影响及其pH。用CPE的所提出的电极的比较,用官能化纤维素(EDAC-CPE)和PD(PD-CPE)修改的CPE改性的CPE显示了PDNPS @ EDAC-CPE具有最佳性能。具有非常低负载的PD的所提出的电极包括诸如使用纤维素作为可生物降解的聚合物,低成本,非常好的性能和易于制备的若干优点,这可能是高纯度电催化氢气产生的完美候选者。

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  • 来源
    《RSC Advances》 |2015年第86期|共7页
  • 作者单位

    Iran Univ Sci &

    Technol Res Lab Real Samples Anal Fac Chem Tehran 1684613114 Iran;

    Iran Univ Sci &

    Technol Res Lab Real Samples Anal Fac Chem Tehran 1684613114 Iran;

    Iran Univ Sci &

    Technol Dept Chem Catalysts &

    Organ Synth Res Lab Tehran 1684613114 Iran;

    Iran Univ Sci &

    Technol Dept Chem Catalysts &

    Organ Synth Res Lab Tehran 1684613114 Iran;

    Iran Univ Sci &

    Technol Res Lab Real Samples Anal Fac Chem Tehran 1684613114 Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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