logo
Home  > Chemistry  > Heterocyclic Building Blocks  > Pyridines  > 5-(Morpholine-4-carbonyl)pyridine-3-boronic acid, pinacol ester

AB76281

1073371-92-2 | 5-(Morpholine-4-carbonyl)pyridine-3-boronic acid, pinacol ester

Packsize Purity Availability Price Discounted Price    Quantity
250mg 95% in stock $105.00 $74.00 -   +
1g 95% in stock $201.00 $141.00 -   +
5g 95% in stock $572.00 $400.00 -   +
10g 95% in stock $945.00 $661.00 -   +
25g 95% in stock $1,878.00 $1,315.00 -   +

*All products are for research use only and not intended for human or animal use.

*All prices are in USD.

Description
Catalog Number: AB76281
Chemical Name: 5-(Morpholine-4-carbonyl)pyridine-3-boronic acid, pinacol ester
CAS Number: 1073371-92-2
Molecular Formula: C16H23BN2O4
Molecular Weight: 318.1758
MDL Number: MFCD07781248
SMILES: O=C(c1cncc(c1)B1OC(C(O1)(C)C)(C)C)N1CCOCC1

 

Computed Properties
Complexity: 435  
Covalently-Bonded Unit Count: 1  
Heavy Atom Count: 23  
Hydrogen Bond Acceptor Count: 5  
Rotatable Bond Count: 2  

 

 

Upstream Synthesis Route
  • $name$ is a versatile chemical compound that finds extensive applications in chemical synthesis, particularly in the field of pharmaceuticals and materials science. With its unique structure containing a 4-morpholinyl group and a 3-pyridinyl group connected to a boron-containing dioxaborolane moiety, $name$ serves as a valuable building block in the synthesis of various organic molecules.In synthetic chemistry, $name$ can be utilized as a key intermediate in the preparation of complex pharmaceutical compounds, agrochemicals, and functional materials. Its strategic placement of functional groups enables precise manipulation of chemical reactions, allowing for the efficient construction of intricate molecular architectures. Furthermore, the boron functionality in $name$ offers opportunities for cross-coupling reactions and site-selective transformations, enhancing the synthetic utility of this compound.Researchers and organic chemists rely on the unique reactivity and structural properties of $name$ to streamline the synthesis of novel compounds with potential biological activities or advanced material properties. By harnessing the chemical versatility of $name$, scientists can access diverse structural motifs and explore new avenues in drug discovery, materials science, and chemical innovation.
FEATURED PRODUCTS