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Heliogen and Bloom Energy demonstrate production of low-cost green hydrogen; concentrated solar and high-temp electrolysis

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Heliogen’s AI-enabled concentrated solar energy system is designed to create carbon-free steam, electricity, and heat from abundant and renewable sunlight. When combined with Bloom’s proprietary solid oxide, high-temperature electrolyzer, hydrogen can be produced 45% more efficiently than low-temperature PEM and alkaline electrolyzers.

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USABC awards 24M $3.8M contract to support the development of low-cost, fast-charging Li-metal batteries

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The two-year project, which includes a 50% cost share, will focus on the development of a low-cost, fast-charging EV battery technology. The continued growth of the EV industry requires lower-cost, faster-charging batteries.

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Argonne-led team develops new low-cost cobalt-based catalyst for PEM electrolysis

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A multi-institutional team led by the US Department of Energy’s (DOE) Argonne National Laboratory (ANL) has developed a low-cost cobalt-based catalyst for the production of hydrogen in a proton exchange membrane water electrolyzer (PEMWE). volts (Nafion 212 membrane) and low degradation in an accelerated stress test.

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Umicore starts industrialization of HLM manganese-rich battery materials technology for EVs

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Umicore is starting the industrialization of its manganese-rich HLM (high lithium, manganese) cathode active materials (CAM) technology and is targeting commercial production and use in electric vehicles (EVs) in 2026. —Ralph Kiessling, Executive Vice President Energy & Surface Technologies at Umicore

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Benchmark: global battery industry needs to invest $514B to meet demand in 2030; $920B by 2035

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Globally, the battery industry needs to invest at least $514 billion across the whole supply chain to meet expected demand in 2030, and $920 billion by 2035, according to a new analysis by Benchmark. Most of this growth is driven by an ever increasing demand for electric vehicles. The cost of geopolitics. Cathodes and anodes.

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GWU team demonstrates highly scalable, low-cost process for making carbon nanotube wools directly from CO2

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This synthesis consumes only CO 2 and electricity, and is constrained only by the cost of electricity. unusually high electrical conductivity and Raman spectra of these materials demonstrated in the linked Data in Brief paper are that of multi-walled carbon nanotubes, and are due to the morphology as demonstrated by TEM.

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EPFL team develops low-cost catalyst for splitting CO2

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EPFL scientists have developed an Earth-abundant and low-cost catalytic system for splitting CO 2 into CO and oxygen—an important step towards achieving the conversion of renewable energy into hydrocarbon fuels. Using only Earth-abundant materials to catalyze both reactions, this design keeps the cost of the system low.

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