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HyperSolar reaches 1.25 V for water-splitting with its self-contained low-cost photoelectrochemical nanosystem

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volts (V) of water-splitting voltage with its novel low-cost electrolysis technology. Future development efforts will focus on increasing the currents and photovoltages beyond 1.5V. Our low cost, submersible semiconductor technology does not require a fossil fuel component, making the process truly as ‘green’ as possible.

Low Cost 246
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European project to develop cobalt-free EV batteries awarded €11.8M

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The COBRA (CObalt-free Batteries for FutuRe Automotive Applications) project has been awarded a €11.8-million The project will result in a unique battery system that features superior energy density, low cost, increased cycles and reduced critical materials. million grant to develop Next Generation Cobalt-free batteries.

Batteries 360
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ion Ventures and LiNa Energy conclude successful test of solid-state sodium-nickel battery platform

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LiNa Energy is commercializing a safe, ~$50kWh (at mass manufacturing), cobalt-free battery platform that is suited to grid storage and the electrification of transportation. ion Ventures is leading the deployment of the battery in a real-world environment with a view to deploying it into the grid storage market in the future.

Sodium 497
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University of Houston team demonstrates new efficient solar water-splitting catalyst for hydrogen production

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Researchers from the University of Houston (UH) have developed a cobalt(II) oxide (CoO) nanocrystalline catalyst that can carry out overall water splitting with a solar-to-hydrogen efficiency of around 5%. Even with an improved solar-to-hydrogen efficiency rate of around 5%, the conversion rate is still too low to be commercially viable.

Houston 268
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SOFC-maker Bloom Energy announces initial strategy for hydrogen market entry; partnership with SK

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Solid-oxide-fuel-cell manufacturer Bloom Energy is entering the commercial hydrogen market by introducing hydrogen-powered fuel cells and electrolyzers that produce renewable hydrogen. Generating low-cost hydrogen from intermittent renewables is a sine qua non for decarbonization. —Jason Ahn, CEO of SK E&C.

Hydrogen 386
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New catalysts convert ethanol to butanol with high selectivity; potential low-cost upgrade for ethanol plants

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Researchers at the University of Bristol (UK) have developed a new family of catalysts that enables the conversion of ethanol into n-butanol—a higher alcohol with better characteristics for transportation applications than ethanol—with selectivity of more than 95% at good conversion. —Professor Duncan Wass.

Convert 236
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Faraday Institution to award up to £55M to five consortia for energy storage research

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The Faraday Battery Challenge is part of the UK government’s Industrial Strategy Challenge Fund (ISCF), overseen by the Department for Business, Energy and Industrial Strategy to help transform the production of batteries for the future of electric vehicles (EVs) in the UK. Next generation lithium ion cathode materials.