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Open AccessJournal ArticleDOI

A high specific capacity membraneless aluminum-air cell operated with an inorganic/organic hybrid electrolyte

TLDR
In this paper, a microfluidic aluminum-air cell working with KOH methanol-based anolyte was developed in order to overcome the self-discharge issue of aluminum.
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This article is published in Journal of Power Sources.The article was published on 2016-12-30 and is currently open access. It has received 12 citations till now. The article focuses on the topics: Electrolyte.

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Citations
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Optimum Conditions for the Fabrication of Zein/Ag Composite Nanoparticles from Ethanol/H₂O Co-Solvents Using Electrospinning.

TL;DR: The optimum conditions for the fabrication of zein/Ag composite nanoparticles from ethanol/H2O cosolvents using electrospinning and the properties of the composite were investigated and indicate the coexistence of a zein matrix and well-distributed Ag nanoparticles.
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Solid-state Al-air battery with an ethanol gel electrolyte

TL;DR: In this paper, an ethanol gel electrolyte is developed for Al-air battery for the first time in this work, by using KOH as solute and polyethylene oxide as gelling agent.
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Solid-state Al-air battery with an ethanol gel electrolyte

TL;DR: In this article , an ethanol gel electrolyte is developed for Al-air battery for the first time in this work, by using KOH as solute and polyethylene oxide as gelling agent.
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Study of electromotive force of a new type of membraneless fuel cell operating on renewable fuel

TL;DR: The possibility of using base metals and alloys based on them as electrodes for a new type of membraneless fuel cells operating on renewable fuel has been investigated in this paper, where the phase boundary of two immiscible liquids in the ethanol-water-potassium hydroxide system plays a role of a membrane in these elements.
References
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Journal ArticleDOI

Metal–Air Batteries with High Energy Density: Li–Air versus Zn–Air

TL;DR: Li-air and Zn-air batteries have been studied extensively in the past decade as mentioned in this paper, with the aim of providing a better understanding of the new electrochemical systems, and metal-air battery with conversion chemistry is a promising candidate.
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Recent advances in non-precious metal catalysis for oxygen-reduction reaction in polymer electrolyte fuel cells

TL;DR: In this paper, the authors focus on the new synthesis methods that have led to these breakthroughs and analyze the improvements required from NPMC-based catalysts to match the performance of Pt-based cathodes, even at high current density.
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A Critical Review of Li/Air Batteries

TL;DR: In this paper, the authors discuss the most critical challenges to developing robust, high-energy Li/air batteries and suggest future research directions to understand and overcome these challenges and predict that Li-air batteries will primarily remain a research topic for the next several years.
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Advanced zinc-air batteries based on high-performance hybrid electrocatalysts

TL;DR: Li et al. as mentioned in this paper constructed stable zinc-air batteries using novel catalysts for oxygen reduction and evolution reactions, but their realization is hampered by the lack of efficient and robust air catalysts.
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Aluminum as anode for energy storage and conversion: a review

TL;DR: In this paper, a review of aluminum-air secondary batteries is presented, including aqueous electrolyte primary batteries, aluminum air batteries, and molten salt secondary batteries, as well as solution additive to electrolytes.
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