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Rice U team creates low-cost, high-efficiency integrated device for solar-driven water splitting; solar leaf

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Rice University researchers have created an efficient, low-cost device that splits water to produce hydrogen fuel. The module developed at Rice University can be immersed into water directly to produce fuel when exposed to sunlight. That lowers the entry barrier for commercial adoption. Illustration by Jia Liang.

Low Cost 243
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USABC awards $2.4M contract to WPI for development of low-cost/fast-charge batteries for EV applications

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million contract to Worcester Polytechnic Institute (WPI) to lead a program to develop low-cost/fast-charge batteries for electric vehicle (EV) applications. The contract award, which includes a 50% cost share, funds a 36-month project that began earlier this year. —Yan Wang.

Low Cost 186
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DOE awarding $46M to 8 companies to support commercial fusion energy development

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These awardees will work to acheive important technical and commercialization milestones to advance successful design of a fusion pilot plant (FPP) to move fusion toward technical and commercial viability. Commercial fusion power on a decadal timescale with the compact, high-field ARC power plant. Realta Fusion Inc.

Fusion 305
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European HEFT project seeks lower-cost, more efficient and power-dense PM emotor for EVs

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A new €4-million research project funded by the EU is seeking to develop a lower-cost, more efficient and power-dense permanent magnet eMotor for electric vehicles (EVs). The consortium of eight European partners in the HEFT project is led by Mondragan University and includes GKN Automotive.

Power 273
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Sionic Energy, formerly NOHMs, launches to commercialize next-generation silicon-anode Li-ion battery cells

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Sionic’s silicon-anode battery cell designs incorporate the company’s complete technology innovations that deliver up to 50% greater energy density, 30% lower cost, and increased safety, and can be integrated into cylindrical, pouch, or prismatic cell formats in existing cell production supply chains and infrastructure.

Li-ion 221
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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. Further, overcoming the corrosive degradation of these “artificial photosynthesis” systems remains a challenge and has thus far eluded commercialization. This lowers the system cost of what is essentially an electrolysis process.

Low Cost 246
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SunHydrogen extends research agreement with University of Iowa; development of Gen 2 multi-junction nanoparticles for hydrogen production

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SunHydrogen , the developer of a technology to produce renewable hydrogen using sunlight and water, has extended its sponsored research agreement with the University of Iowa through 31 August 2020. The University of Iowa has been a key and productive partner in the development of our GEN 1 panels. —Tim Young, CEO of SunHydrogen.

Iowa 221