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Atomfair Naptalam C18H13NO3
Description Naptalam (CAS No. 1547-87-1), also known as 2-(naphthalen-1-ylcarbamoyl)benzoic acid , is a high-purity chemical compound with the molecular formula C18H13NO3. This specialized organic acid is widely utilized in advanced electrochemical applications, particularly in energy storage systems. Our Naptalam is synthesized under strict quality control measures to ensure exceptional purity and consistency, making it ideal for research and industrial applications. Available in various quantities, this product is supplied with comprehensive analytical documentation including HPLC, NMR, and MSDS data. Suitable for use in battery research, material science, and specialty chemical synthesis, our Naptalam meets the stringent requirements of academic and industrial…
Description
Description
Naptalam (CAS No. 1547-87-1), also known as 2-(naphthalen-1-ylcarbamoyl)benzoic acid, is a high-purity chemical compound with the molecular formula C18H13NO3. This specialized organic acid is widely utilized in advanced electrochemical applications, particularly in energy storage systems. Our Naptalam is synthesized under strict quality control measures to ensure exceptional purity and consistency, making it ideal for research and industrial applications. Available in various quantities, this product is supplied with comprehensive analytical documentation including HPLC, NMR, and MSDS data. Suitable for use in battery research, material science, and specialty chemical synthesis, our Naptalam meets the stringent requirements of academic and industrial researchers working on next-generation energy solutions.
- CAS No: 1547-87-1
- Molecular Formula: C18H13NO3
- Molecular Weight: 291.3
- Exact Mass: 291.08954328
- Monoisotopic Mass: 291.08954328
- IUPAC Name: 2-(naphthalen-1-ylcarbamoyl)benzoic acid
- SMILES: C1=CC=C2C(=C1)C=CC=C2NC(=O)C3=CC=CC=C3C(=O)O
- Synonyms: NAPTALAM, 132-66-1, Grelutin, N-(1-Naphthyl)phthalamic acid, N-1-Naphthylphthalamic acid
Application
Naptalam serves as a critical performance-enhancing additive in fluorinated lithium battery electrolytes, where it significantly improves low-temperature operational capabilities. Researchers utilize this compound to study its effects on electrolyte conductivity and interfacial stability in extreme conditions. Its unique chemical properties make it valuable for developing advanced battery systems with extended operational ranges. The compound is also investigated for potential applications in other energy storage technologies requiring enhanced thermal performance.
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