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Stanford team reports new low-cost, non-precious metal catalyst for water splitting with performance close to platinum

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Structure of the NiO/Ni-CNT hybrid. Researchers at Stanford University, with colleagues at Oak Ridge National Laboratory and other institutions, have developed a nickel-based electrocatalyst for low-cost water-splitting for hydrogen production with performance close to that of much more expensive commercial platinum electrocatalysts.

Low Cost 273
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Aqueous hybrid-ion battery company Aquion completes $55M financing round

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a developer and manufacturer of Aqueous Hybrid Ion (AHI) batteries and stationary energy storage systems, recently completed the closing of a $55-million Series D financing round. Aqueous hybrid ion chemistry. Aquion spun out of Carnegie Mellon University in 2010. Aquion Energy, Inc., Earlier post.). Source: Aquion.

Financing 301
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Light-powered nano-bio hybrid organisms consume CO2, create plastics and fuels

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University of Colorado Boulder researchers have developed nanobio-hybrid organisms capable of using airborne carbon dioxide and nitrogen to produce a variety of plastics and fuels, a promising first step toward low-cost carbon sequestration and eco-friendly manufacturing for chemicals. Yuchen Ding, John R. 9b02549.

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NCSU team develops catalyst for thermal hybrid water-splitting and syngas generation with exceptional conversion; H2 gas and liquid fuels

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Researchers at North Carolina State University have developed a highly effective new perovskite-promoted iron oxide redox catalyst for a hybrid solar-redox scheme they had proposed earlier for partial oxidation and water-splitting of methane. Schematic of the hybrid process for liquid fuel and hydrogen generation.

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Aquion Energy closed $35M D round; aqueous hybrid ion batteries for stationary storage

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a developer and manufacturer of Aqueous Hybrid Ion (AHI) stationary energy storage systems, has completed the first closing of a $35 million Series D financing round. The hybrid energy storage device comprises a low-cost, activated carbon anode, a Manganese oxide cathode (MnO 2 ), and an electrolyte consisting of Na 2 SO 4 in water (~1 M).

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New low-cost bio-inspired nanostructured MoS2 catalyst performs almost as efficiently as Pt for hydrogen production

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A team led by researchers from Sandia National Laboratories and the University of California, Merced has developed an efficient molybdenum disulfide (MoS 2 ) catalyst for driving the hydrogen evolution reaction (HER). Work at UC Merced was supported by a university startup fund. —Chen et al. Resources.

Low Cost 170
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New photoelectrode with enhanced visible light absorption for improved solar water-splitting for hydrogen production

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A team of researchers at Ulsan National Institute of Science and Technology (UNIST), Korea University, and the Korea Advanced Institute of Science and Technology (KAIST) has developed a new type of multilayered (Au NPs/TiO 2 /Au) photoelectrode that could boost the ability of solar water-splitting to produce hydrogen.

Water 150