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MSE PRO 3-Pyrrolidinophenylboronic acid, ≥98.0% Purity - MSE Supplies LLC

MSE PRO 3-Pyrrolidinophenylboronic acid, ≥98.0% Purity

SKU: CM1388

  • $ 17995
  • Save $ 2015


MSE PRO™ 3-Pyrrolidinophenylboronic acid, ≥98.0% Purity

MSE PRO™ 3-Pyrrolidinophenylboronic acid is a unique and highly valuable building block for organic synthesis. It combines the reactivity of the boronic acid functional group with the structural diversity provided by the pyrrolidine heterocycle. This compound serves as an excellent starting material or intermediate for the preparation of a wide range of complex organic molecules. The boronic acid moiety can undergo various transformations, such as Suzuki coupling, amination, and oxidation reactions, enabling the construction of intricate molecular architectures. Furthermore, the pyrrolidine ring introduces additional opportunities for functionalization and derivatization, allowing for the fine-tuning of physicochemical properties and biological activities of the target compounds. 

MSE Supplies offers various N-heterocyclic drug small molecules and other chemical reagents. Please contact us for bulk orders.

Technical Specifications:

CAS No. 659731-18-7
Chemical name 3-Pyrrolidinophenylboronic acid
Synonym(s)
  • (3-pyrrolidin-1-ylphenyl)boronic acid

  • (3-(pyrrolidin-1-yl)phenyl)boronic acid
Molecular formula C10H14BNO2      
Pack size 5 g (CM1388)
Molecular weight 191.04 g/mol
Purity 98.98% (HPLC) 
Boiling point 403.2±47.0 °C (Predicted)
Density   1.19±0.1 g/cm3 (Predicted)
pKa 8.56±0.10 (Predicted)
Appearance Off-white to gray solid
Storage  Store at room temperature


References:

[1] Rowbottom, M. W., Vickers, T. D., Dyck, B., Tamiya, J., Zhang, M., Zhao, L., ... & Goodfellow, V. S. (2005). Synthesis and structure–activity relationships of biarylcarboxamide bis-aminopyrrolidine urea derived small-molecule antagonists of the melanin-concentrating hormone receptor-1 (MCH-R1). Bioorganic & medicinal chemistry letters15(14), 3439-3445.

[2] Gu, Y., & Jérôme, F. (2013). Bio-based solvents: an emerging generation of fluids for the design of eco-efficient processes in catalysis and organic chemistry. Chemical Society Reviews42(24), 9550-9570.