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 One of the most urgent challenges of our time is discovering how to generate the energy and products we need sustainably – in a way that doesn’t compromise the well-being of future generations by depleting limited resources or accelerating climate change.

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Energy sciences

How electrons flow in the oxygen-evolving complex of Photosystem II.

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The Medal is the Nation's Highest Honor for Achievement in the Field of Science

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Rapid Charging and Draining Doesn’t Damage Lithium Ion Electrode as Much as Thought

Photo - battery cycler
News Feature

By observing how hydrogen is absorbed into individual palladium nanocubes, Stanford materials scientists have detailed a key step in storing energy and information in...

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Researchers have taken a big step toward accomplishing what battery designers have been trying to do for decades – design a pure lithium anode.

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Sulfur Cathode Experiments Test Chemistry Beyond Conventional Lithium-Ion

Photo - scientist preparing a dime-sized prototype battery
Press Release

Using high-brilliance X-rays, researchers track the process that fuel cells use to produce electricity, knowledge that will help make large-scale

Understanding the origins of our solar system, the future of our planet or humanity requires complex calculations run on high-power computers.

Photo - tom abel in srcc
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VIA Stanford Energy

A New Way to Harness Waste Heat

A new battery design harnesses waste heat in a four-step process: heating, charging, cooling and discharging.

News Feature

Windows that darken to filter out sunlight in response to electric current, function much like batteries. Now, X-ray studies at SLAC provide a crystal-clear...

lithium ions interact with an ultrathin sheet of nickel oxide
Press Release

Scientists have discovered a potential way to make graphene – a single layer of carbon atoms with great promise for future electronics – superconducting...

Superconducting Graphene Layers
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Created by scientists from Stanford, SLAC and Denmark, the new nickel-gallium catalyst converts carbon dioxide emissions into an important industrial chemical and potential fuel

Jens Norskov
Press Release

An electrode designed like a pomegranate – with silicon nanoparticles clustered like seeds in a tough carbon rind – overcomes several remaining obstacles to...

A fanciful illustration of pomegranate seeds inside a conventional battery