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Atomfair Lithium aluminum AlLi CAS 87871-87-2
Lithium Aluminum (AlLi) is a high-purity intermetallic compound widely utilized in advanced materials research and industrial applications. This inorganic reagent offers exceptional reactivity due to its unique lithium-aluminum bonding structure, making it invaluable for synthesis and energy storage applications. Available in various forms including powder, pellets, and ingots, our product undergoes rigorous quality control to ensure consistency in particle size distribution, purity (>99%), and minimal oxide content. Ideal for use in lithium-ion battery research, hydrogen storage materials development, and metallurgical processes. Packaged under inert gas to prevent oxidation and degradation, ensuring optimal performance for your laboratory or production needs.
Description
Lithium Aluminum (AlLi) is a high-purity intermetallic compound widely utilized in advanced materials research and industrial applications. This inorganic reagent offers exceptional reactivity due to its unique lithium-aluminum bonding structure, making it invaluable for synthesis and energy storage applications. Available in various forms including powder, pellets, and ingots, our product undergoes rigorous quality control to ensure consistency in particle size distribution, purity (>99%), and minimal oxide content. Ideal for use in lithium-ion battery research, hydrogen storage materials development, and metallurgical processes. Packaged under inert gas to prevent oxidation and degradation, ensuring optimal performance for your laboratory or production needs.
Properties
- CAS Number: 87871-87-2
- IUPAC Name: aluminum;lithium
- InChI: InChI=1S/Al.Li
- InChI Key: JFBZPFYRPYOZCQ-UHFFFAOYSA-N
- Exact Mass: 33.9975418
- Molecular Formula: AlLi
- Molecular Weight: 33.9
- SMILES: [Li].[Al]
- Monoisotopic Mass: 33.9975418
- Synonyms: lithium aluminum, aluminum;lithium, 87871-87-2, Aluminum-lithium, lithium aluminium, 12042-37-4, JFBZPFYRPYOZCQ-UHFFFAOYSA-N
Lithium Aluminum serves as a key precursor in the synthesis of advanced battery materials, particularly for solid-state electrolytes and anode compositions. Its strong reducing properties make it valuable for organic and inorganic synthesis reactions requiring controlled hydrogenation. Researchers also employ this compound in hydrogen storage studies due to its ability to form complex hydrides with high volumetric density.
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Disclaimer: Sold exclusively for laboratory research. Prohibited for commercial use, diagnostics, or human/animal applications. Buyers assume all compliance liability.
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