(5-(methoxy-d3)pyridin-3-yl)boronic acid
95%
- Product Code: 37020
CAS:
2241867-27-4
Molecular Weight: | 155.962105334 g./mol | Molecular Formula: | C₆H₅BD₃NO₃ |
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Density: | Storage Condition: | 2-8℃ |
Product Description:
(5-(methoxy-d3)pyridin-3-yl)boronic acid is primarily utilized in the field of organic synthesis, particularly in Suzuki-Miyaura cross-coupling reactions. This compound serves as a key building block for the introduction of deuterated methoxy groups into complex molecules, which is valuable in the development of deuterated pharmaceuticals. Deuterated compounds often exhibit enhanced metabolic stability and improved pharmacokinetic properties, making them significant in drug discovery and development. Additionally, this chemical is employed in the synthesis of labeled compounds for use in mechanistic studies and analytical applications, such as NMR spectroscopy, where deuterium labeling helps in tracking molecular interactions and pathways. Its role in creating isotopically labeled materials is also crucial in research involving isotope effects and metabolic profiling.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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0.020 | 10-20 days | ฿22,880.00 |
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(5-(methoxy-d3)pyridin-3-yl)boronic acid
(5-(methoxy-d3)pyridin-3-yl)boronic acid is primarily utilized in the field of organic synthesis, particularly in Suzuki-Miyaura cross-coupling reactions. This compound serves as a key building block for the introduction of deuterated methoxy groups into complex molecules, which is valuable in the development of deuterated pharmaceuticals. Deuterated compounds often exhibit enhanced metabolic stability and improved pharmacokinetic properties, making them significant in drug discovery and development. Additionally, this chemical is employed in the synthesis of labeled compounds for use in mechanistic studies and analytical applications, such as NMR spectroscopy, where deuterium labeling helps in tracking molecular interactions and pathways. Its role in creating isotopically labeled materials is also crucial in research involving isotope effects and metabolic profiling.
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