A new bidirectional catalyst developed by researchers at Tsinghua University in China could advance the development of lithium-carbon dioxide (Li-CO2) batteries. Capable of powering rovers, these ...
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Three-in-one process recycles spent lithium batteries, captures CO₂ and generates catalysts—all at room temperature
Scientists from China have developed a new way to recycle lithium batteries that is a triple win for the planet. It not only ...
Assesses technological and policy options for reducing the environmental and social impacts of battery-material mining and ...
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How a new, more sustainable lithium mining process could kick off the industry in Western Canada
As demand — and competition — for critical minerals used in clean technologies heats up around the world, mining startups are ...
Chinese team says their process can recover most of the lithium without the need for harsh and polluting chemicals Chinese scientists have found a way to recycle lithium batteries using only carbon ...
Lithium-carbon dioxide batteries represent a promising class of energy storage systems that not only offer high energy density but also contribute to carbon capture by utilising CO₂ in the ...
Lithium-CO2 'breathing' batteries release power while capturing carbon dioxide, offering a greener alternative that may one day outperform today's lithium-ion batteries. (Nanowerk News) Scientists at ...
Expert analysis compares Donut Lab’s solid-state pitch to pseudo-capacitor behavior and real cycle life data, helping you spot red flags fast.
Glass fibers from retired wind turbine blades can be converted into high-capacity silicon-carbon battery anodes, turning a growing waste problem into valuable energy storage materials.
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