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从碳废料中轻松剥离的Ni(OH)/石墨烯层促进了葡萄糖电氧化。

Promoted glucose electrooxidation at Ni(OH)/graphene layers exfoliated facilely from carbon waste material.

作者信息

Abdelrahim Ahmed M, Abd El-Moghny Muhammad G, El-Shakre Mohamed E, El-Deab Mohamed S

机构信息

Department of Chemistry, Faculty of Science, Cairo University Cairo Egypt

出版信息

RSC Adv. 2023 Jan 10;13(3):1811-1822. doi: 10.1039/d2ra07309a. eCollection 2023 Jan 6.

Abstract

Nowadays, the glucose electro-oxidation reaction (GOR) is considered one of the most important solutions for environmental pollution. The GOR is the anodic reaction in direct glucose fuel cells and hybrid water electrolysis. In this study, the GOR is boosted using a carbon support modified with Ni(OH) as a non-precious catalyst. The carbon support, with generated graphene nanosheets having a large surface area, grooves, and surface functional groups, is prepared a simple electrochemical treatment of the carbon rods of an exhausted zinc-carbon battery. Ni(OH) is electrodeposited on the surface of the functionalized exfoliated graphite rod (FEGR) the dynamic hydrogen bubbling technique (DHBT) and tested for GOR. The thus-prepared Ni(OH)/FEGR electrode is characterized by SEM, mapping EDX, HR-TEM, XRD, and XPS characterization tools. Ni(OH)/FEGR displays an onset potential of 1.23 V the reversible hydrogen electrode (RHE) and attains high current densities at lower potentials. Additionally, Ni(OH)/FEGR showed prolonged stability toward GOR by supporting a constant current over a long electrolysis time. The enhanced catalytic performance is attributed to the superb ionic and electronic conductivity of the catalyst. Importantly, ionic conductivity increased, due to (i) a large surface area of generated graphene layers, (ii) enhanced distribution of active material during deposition using DHBT, and (iii) increased hydrophilicity of the underlying substrate. Therefore, the Ni(OH)/FEGR electrode can be used efficiently for GOR as a low-cost catalyst, achieving low onset potential and high current densities at low potentials.

摘要

如今,葡萄糖电氧化反应(GOR)被认为是解决环境污染问题的最重要方案之一。GOR是直接葡萄糖燃料电池和混合水电解中的阳极反应。在本研究中,使用用Ni(OH)改性的碳载体作为非贵金属催化剂来促进GOR。通过对耗尽的锌碳电池的碳棒进行简单的电化学处理,制备出具有大表面积、沟槽和表面官能团的生成石墨烯纳米片的碳载体。通过动态氢鼓泡技术(DHBT)将Ni(OH)电沉积在功能化剥离石墨棒(FEGR)表面,并对其进行GOR测试。用扫描电子显微镜(SEM)、能谱分析(mapping EDX)、高分辨率透射电子显微镜(HR-TEM)、X射线衍射(XRD)和X射线光电子能谱(XPS)表征工具对由此制备的Ni(OH)/FEGR电极进行表征。Ni(OH)/FEGR相对于可逆氢电极(RHE)的起始电位为1.23 V,并在较低电位下获得高电流密度。此外,Ni(OH)/FEGR通过在长时间电解过程中维持恒定电流,对GOR表现出延长的稳定性。催化性能的提高归因于催化剂出色的离子和电子导电性。重要的是,离子导电性增加的原因是:(i)生成的石墨烯层的大表面积;(ii)使用DHBT沉积过程中活性材料分布的增强;(iii)底层基材亲水性的增加。因此,Ni(OH)/FEGR电极作为一种低成本催化剂可有效地用于GOR,在低电位下实现低起始电位和高电流密度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/961d/9830938/8c47e5b533fe/d2ra07309a-s1.jpg

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