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Catalog Number:
36415
CAS Number:
89878-14-8
Diéthyl(3-pyridyl)borane
Purity:
≥ 97 % (CCM)
Synonym(s):
3-(diéthylboryl)pyridine
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Product Information

Diethyl(3-pyridyl)borane is a versatile organoboron compound known for its unique reactivity and applications in organic synthesis. This compound, characterized by its pyridine ring, serves as an essential reagent in various chemical reactions, particularly in the formation of carbon-carbon bonds. Its ability to participate in cross-coupling reactions makes it invaluable in the synthesis of complex organic molecules, including pharmaceuticals and agrochemicals. Researchers and industry professionals appreciate its efficiency in facilitating reactions under mild conditions, which can lead to higher yields and reduced by-products compared to traditional methods.

In addition to its role in organic synthesis, Diethyl(3-pyridyl)borane is also utilized in the development of new materials and catalysts. Its unique properties allow for the fine-tuning of reaction pathways, making it a preferred choice for chemists aiming to innovate in their respective fields. With its growing importance in the pharmaceutical and materials science industries, this compound presents significant potential for advancing research and development initiatives.

Synonyms
3-(diéthylboryl)pyridine
CAS Number
89878-14-8
Purity
≥ 97 % (CCM)
Molecular Formula
C 9 H 14 BN
Molecular Weight
147.03
MDL Number
MFCD00012348
PubChem ID
642851
Melting Point
172 - 175 ?C
Appearance
Poudre blanche à blanc cassé ou jaune pâle
Conditions
Magasin chez RT
General Information
Synonyms
3-(diéthylboryl)pyridine
CAS Number
89878-14-8
Purity
≥ 97 % (CCM)
Molecular Formula
C 9 H 14 BN
Molecular Weight
147.03
MDL Number
MFCD00012348
PubChem ID
642851
Melting Point
172 - 175 ?C
Appearance
Poudre blanche à blanc cassé ou jaune pâle
Conditions
Magasin chez RT
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

Diethyl(3-pyridyl)borane is widely utilized in research focused on:

  • Organic Synthesis: This compound serves as a versatile reagent in organic chemistry, facilitating the formation of carbon-boron bonds, which are crucial for synthesizing complex organic molecules.
  • Catalysis: It is employed as a catalyst in various chemical reactions, particularly in cross-coupling reactions, enhancing reaction efficiency and selectivity in the production of pharmaceuticals and agrochemicals.
  • Material Science: The compound is used in developing advanced materials, such as polymers and coatings, due to its ability to modify material properties and improve performance.
  • Medicinal Chemistry: Researchers utilize it in drug development processes, particularly in designing boron-containing compounds that can exhibit therapeutic properties, such as anti-cancer activity.
  • Analytical Chemistry: It plays a role in analytical applications, including the detection and quantification of certain compounds, thanks to its unique reactivity and ability to form stable complexes.

Citations