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3篇 您的检索式:作者名="Jens Noack"
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1A review of electrolyte additives and impurities in vanadium redox flow batteries显示文摘As one of the most important components of the vanadium redox flow battery(VRFB), the electrolyte can impose a significant impact on cell properties, performance and capital cost. In particular, the electrolyte composition will influence energy density, operating temperature range and the practical applications of the VRFB. Various approaches to increase the energy density and operating temperature range have been proposed. The presence of electrolyte impurities, or the addition of a small amount of other chemical species into the vanadium solution can alter the stability of the electrolyte and influence cell performance, operating temperature range, energy density, electrochemical kinetics and cost effectiveness. This review provides a detailed overview of research on electrolyte additives including stabilizing agents, immobilizing agents, kinetic enhancers, as well as electrolyte impurities and chemical reductants that can be used for different purposes in the VRFBs.Liuyue Cao Maria Skyllas-Kazacos Chris Menictas Jens Noack 2018Journal of Energy Chemistry2018,27,5:7
2The influence of electrochemical treatment on electrode reactions for vanadium redox-flow batteries显示文摘Through targeted and reproducible electrochemical treatment of glassy carbon electrodes,investigations have been carried out on the electrochemical behaviour of the oxidation of V^(2+),VO^(2+)and the reductions of VO_2^+,VO^(2+)and V^(3+)in order to pretreat electrodes specifically for use in vanadium redox flow batteries and,if possible,to treat them in situ.For this purpose,a glassy carbon electrode was treated potentiostatically for a period of 30 s at different potentials in the range of 500 mV–2000 mV vs.Hg/Hg_2SO_4in2 M H_2SO_4and then linear sweep voltammograms were performed in the different vanadium-containing solutions.With this method,it could be shown that all reactions are extremely surface sensitive and the reaction speeds changed by several decades.The reaction rates increased significantly in all reactions compared to polished electrodes and had an optimum treatment potential of approx.1600 mV vs.Hg/Hg_2SO_4,although the oxidation reaction of V^(2+)and the reduction reactions of V^(3+)and VO^(2+)had opposite tendencies to oxidation of VO^(2+)and the reduction of VO_2^+in the area of low treatment potentials.In the former,the kinetics increased and in the latter,they decreased.In addition,causes were investigated using confocal microscopy and XPS.No correlation was found to the roughness or size of the stretched surfaces,although these changed significantly as a result of the treatment.XPS measurements gave indications of a dependence on hydroxyl groups for the oxidation of VO^(2+)and the reduction of VO_2^+,while for the reactions of oxygen-free cations and the reduction of VO^(2+)weak indications of a dependence on carboxyl groups were obtained.Jens Noack Nataliya RoznYatovskaya Jessica Kunzendorf Maria Skyllas-Kazacos Chris Menictas Jens Tubke 2018Journal of Energy Chemistry2018,27,5:1
3Development and characterization of a 280 cm 2 vanadium/oxygen fuel cell显示文摘Jens Noack Carsten Cremers Domnik Bayer Jens Tübke Karsten Pinkwart 2013Journal of Power Sources2013,,:1
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