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Impact of the NiO nanostructure morphology on the oxygen evolution reaction catalysis

机译:NIO纳米结构形态对氧气进化反应催化的影响

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The oxygen evolution reaction (OER) is still a barrier to energy generation technologies, motivating the development of new strategies to the rational use of electrodes for OER. This work reports the effect of the morphology of nickel oxide (NiO) nanostructures on their catalytic activity toward OER in alkaline medium. 1D hollow nanofibers (NiO-NFBs) synthesized by solution blow spinning are compared with 3D nanoparticles (NiO-NPTs) synthesized by a well-known citrate method. The intrinsic activity of the electrocatalysts was evaluated by linear sweep voltammetry (LSV), electrochemically active surface area (ECSA), turnover frequency (TOF), and electrochemical impedance spectroscopy (EIS). Results confirm the superiority of NiO-NFBs, with a remarkable difference of 133 mV versus RHE to generate j = 10 mA cm(-2). The NiO-NFBs showed a TOF value 122 times higher than NiO-NPTs. The Tafel analysis and EIS revealed that the hollow structure favors kinetics through a more efficient process of mass and charge transfer. Overall, results corroborate the thesis that the morphology imposes the main rule on the electrocatalyst performance. The morphology of NiO-NFBs is fully preserved after the electrolysis test, while NiO-NPTs degrade through a nanoparticle coalescence mechanism. This work is a contribution to the state of the art of nanostructured NiO-based electrodes for OER.
机译:氧气进化反应(oer)仍然是能源生成技术的障碍,激励开发新策略对oer的合理使用电极。该工作报告了氧化镍(NIO)纳米结构的形态对碱介质中伊尔催化活性的影响。通过溶液吹纺合成的1D中空纳米纤维(NIO-NFBs)与通过众所周知的柠檬酸盐法合成的3D纳米颗粒(NIO-NPTS)进行比较。通过线性扫描伏安法(LSV),电化学活性表面积(ECSA),周转频率(TOF)和电化学阻抗光谱(EIS)评估电催化剂的内在活性。结果证实了NIO-NFBS的优越性,具有133mV的显着差异,而RHE产生J = 10 mA cm(-2)。 NIO-NFBS显示比NIO-NPT的TOF值122倍。 Tafel分析和EIS透露,中空结构通过更有效的质量和电荷转移过程来实现动力学。总体而言,结果证实了形态对电催化剂性能的主要规则施加了对的论据。在电解试验后,NiO-NFBs的形态完全保存,而NiO-NPTS通过纳米粒子聚结机构降解。这项工作是对OER的纳米结构NIO基电极技术的贡献。

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