Improvement of safe bromine electrolytes and their cell performance in H2/Br2 flow batteries caused by tuning the bromine complexation equilibrium
Michael Küttinger,Michael Küttinger,Raphaël Riasse,Jakub Wlodarczyk,Peter Fischer,Jens Tübke,Jens Tübke +6 more
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In this paper, a solution to this problem is proposed by an excess addition of Br2 to these electrolytes, which leads to a permanent bromine fused salt phase in the tank.About:
This article is published in Journal of Power Sources.The article was published on 2022-02-01 and is currently open access. It has received 9 citations till now. The article focuses on the topics: Bromine & Hydrobromic acid.read more
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Halogen Hybrid Flow Batteries Advances for Stationary Chemical Power Sources Technologies
A. E. Antipov,08065912405 +1 more
TL;DR: In this article , the authors highlight the current advances in hybrid redox flow battery (HRFB) technology, encompassing one of the best combinations of efficiency, cost and flexibility due to its module construction, which offers independent scaling of power density and energy capacity.
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Properties of Bromine Fused Salts Based on Quaternary Ammonium Molecules and Their Relevance for Use in a Hydrogen Bromine Redox Flow Battery
TL;DR: In this paper , the authors used seven BCAs at different state of charge in HBr/Br2/H2O electrolytes with a theoretical capacity of 179.6 Ah/L−1.
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Halide aqueous redox flow batteries cathode materials: Recent progress and future perspectives
TL;DR: In this paper , the authors proposed a solution to the huge shortage of renewable energy resources in the world by developing renewable sources urgently to satisfy human demands, unlike the lithium-ion battery.
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Cathode materials for halide-based aqueous redox flow batteries: recent progress and future perspectives.
TL;DR: In this paper , a mini-review of novel electrode materials, including their potential internal mechanisms and effective regulatory means, are summarized and applied in the zinc-halogen, hydrogen-alogen, and polysulfide-hogen ARFB systems, promoting the development of valuable material systems and the innovation of energy storage/conversion technologies.
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Hydrogen Biosensing: Prospects, Parallels, and Challenges
TL;DR: In this article , a review of the recent developments in hydrogen biosensing is presented, highlighting the opportunities and remaining challenges in this field and presenting viable options for on-site and fast hydrogen detection, allowing timely action for mitigating risks related to hydrogen leakages and inflammation.
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TL;DR: New, hydrophobic ionic liquids with low melting points (<−30 °C to ambient temperature) have been synthesized and investigated, based on 1,3-dialkyl imidazolium cations and hydrophilic anions and thus water-soluble.
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