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Atomfair Cyclopentylboronic Acid C5H11BO2
Description Cyclopentylboronic Acid (CAS No. 63076-51-7) is a high-purity organoboron compound with the molecular formula C5H11BO2. This white to off-white crystalline solid is a versatile boronic acid derivative widely used in Suzuki-Miyaura cross-coupling reactions, a cornerstone of modern synthetic organic chemistry. With a molecular weight of 113.95 g/mol, it offers excellent reactivity for forming carbon-carbon bonds in pharmaceutical intermediates, agrochemicals, and materials science applications. Our product is rigorously tested to ensure ??95% purity (HPLC) and is supplied under inert conditions to maintain stability. Ideal for research and industrial-scale applications, it is packaged in amber glass vials or bulk quantities with…
Description
Description
Cyclopentylboronic Acid (CAS No. 63076-51-7) is a high-purity organoboron compound with the molecular formula C5H11BO2. This white to off-white crystalline solid is a versatile boronic acid derivative widely used in Suzuki-Miyaura cross-coupling reactions, a cornerstone of modern synthetic organic chemistry. With a molecular weight of 113.95 g/mol, it offers excellent reactivity for forming carbon-carbon bonds in pharmaceutical intermediates, agrochemicals, and materials science applications. Our product is rigorously tested to ensure ??95% purity (HPLC) and is supplied under inert conditions to maintain stability. Ideal for research and industrial-scale applications, it is packaged in amber glass vials or bulk quantities with proper desiccation to prevent moisture absorption. Storage at 2-8??C under nitrogen is recommended for long-term stability.
- CAS No: 63076-51-7
- Molecular Formula: C5H11BO2
- Molecular Weight: 113.95
- Exact Mass: 114.0852098
- Monoisotopic Mass: 114.0852098
- IUPAC Name: cyclopentylboronic acid
- SMILES: B(C1CCCC1)(O)O
- Synonyms: Cyclopentylboronic acid, 63076-51-7, DTXSID80370218, DTXCID70321254, 672-296-5
Application
Cyclopentylboronic Acid serves as a crucial building block in pharmaceutical synthesis, particularly for introducing cyclopentyl groups via palladium-catalyzed coupling reactions. It finds extensive use in medicinal chemistry for developing bioactive molecules and drug candidates. The compound also plays a role in materials science for creating novel organic electronic materials. Its stability and reactivity make it valuable for constructing complex molecular architectures in academic and industrial research settings.
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