Battery Materials

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2023/06/12

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As the demand for clean and renewable energy sources continues to rise, there is a growing need to invest in electrical storage systems. Renewable energy needs to be stored and distributed according to energy demand. Battery materials research is crucial for a sustainable future. Batteries will play a role in: Driving technological innovation Electrifying transportation Reducing carbon footprints Integrating renewable energy Promoting resource sustainability Enhancing grid reliability Lithium-ion batteries (LIBs) have quickly become the ‘battery of choice’. They offer a lightweight cathode material and high charging efficiency, making them effective solutions for hybrid electric (HEV) and all-electric vehicles (EV). Our selection of lithium-ion battery materials includes the six main types: NMC, NCA, NCM, LFP, LMO, LCO, as well as the newer LNMO. Sodium-ion batteries (SIBs) are emerging as a next-generation battery technology. Prussian blue analogs and Prussian white are among the key materials driving progress toward safer, more sustainable, and cost-effective energy storage solutions. Our anode active materials include lithium titanate, carbon black and graphite that can be coated on copper foils. Other carbon-based graphene materials and carbon nanotubes are known to improve conductivity. Such materials are also being used in ground-breaking solid-state battery research. Explore our range to find the materials that suit your research. Jump to: Browse Collections | Browse Battery Materials | Choose the Right Battery Material | Resources and Support Battery Materials Collections Cathode Active Materials Cathode Active Materials Explore the range of high-purity cathode materials designed for high-capacity, high-voltage batteries to maximize energy density. Anode Active Materials Anode Active Materials Explore the range of anode active materials including graphite for high lithium storage and excellent conductivity. Battery Binders Battery Binders Explore the range o

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