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NIMS researchers report 500 Wh/kg+ Li-air battery

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Researchers at Japan’s National Institute for Materials Science (NIMS) and the NIMS-SoftBank Advanced Technologies Development Center have developed a lithium-air battery with an energy density of more than 500 Wh/kg—significantly higher than currently lithium ion batteries.

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GM researchers demonstrate hierarchical electrode architectures for high energy lithium-chalcogen rechargeable batteries

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Lithium-chalcogen batteries—e.g., lithium-sulfur (Li-S) and lithium selenium (Li-Se) systems— are promising candidates for high energy electrical storage solution. However, in order to achieve competitive energy density compared to current Li-ion batteries (i.e. > Scheme of SPC synthesis route.

Recharge 259
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Empa, UNIGE team develop prototype solid-state sodium battery; focus on improving the solid-solid interface

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Researchers at Empa and the University of Geneva (UNIGE) have developed a prototype of a novel solid-state sodium battery with the potential to store extra energy and with improved safety. Rechargeable all-solid-state batteries promise higher energy density and improved operational safety. The team then tested the battery.

Sodium 186
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KAUST uses laser pulses to boost performance of MXene electrode

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The researchers hope that this strategy could help to engineer an improved anode material in next-generation batteries. Graphite contains flat layers of carbon atoms, and during battery charging, lithium atoms are stored between these layers in a process called intercalation. Resources Bayhan, Z., El-Demellawi, J. Alhajji, E.,

Li-ion 150
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Groupe Renault creating first European factory dedicated to the circular economy of mobility in Flins

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The performance of the ReFactory will also relate to the ability to generate closed-loop supply flows with controlled costs (reuse, recycling for repair), and to develop new value-added skills (retrofitting, dismantling, fleet maintenance, preparation of batteries for the second life, etc.)

Economy 397
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Hybrid biomass flow battery stores electricity and produces valuable chemicals at the same time

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Rechargeable batteries store electricity in their electrode materials, while redox flow batteries use chemicals stored in tanks attached to the electrodes. During operation, the furfural–nickel hydroxide battery converts biomass-derived molecular furfural into either furfuryl alcohol or furoic acid.

Store 368
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PHEVLERs are the Zero CO2 Clean Green Machines of the Future

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The Plug-in Hybrid Electric Vehicle with Long Electric Range (PHEVLER - pronounced “fevler”) is a new category emerging in the electric vehicle marketplace. PHEVLERs are defined as PHEVs with sufficient battery capacity for all electric driving of twice the average daily distance. [

Clean 150