CYCLOBUTANE-1,1-DICARBOXYLIC ACID MONOAMIDE
97%
- Product Code: 39926
CAS:
845621-11-6
Molecular Weight: | 143.14 g./mol | Molecular Formula: | C₆H₉NO₃ |
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EC Number: | MDL Number: | ||
Melting Point: | Boiling Point: | 419.3±24.0℃(Predicted) | |
Density: | 1.430±0.06 g/cm3(Predicted) | Storage Condition: | room temperature, dry |
Product Description:
Cyclobutane-1,1-dicarboxylic acid monoamide is primarily utilized in organic synthesis as a building block for the development of more complex chemical structures. Its unique cyclobutane ring and functional groups make it valuable in the creation of pharmaceutical intermediates, particularly in the design of bioactive molecules. The compound is often employed in medicinal chemistry to explore novel drug candidates, especially those targeting specific enzymes or receptors. Additionally, it serves as a precursor in the synthesis of polymers and advanced materials, where its rigid ring structure can impart desirable mechanical or thermal properties. Its applications also extend to research in supramolecular chemistry, where it is used to study molecular interactions and self-assembly processes.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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0.100 | 10-20 days | ฿1,566.00 |
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0.250 | 10-20 days | ฿2,349.00 |
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1.000 | 10-20 days | ฿5,859.00 |
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CYCLOBUTANE-1,1-DICARBOXYLIC ACID MONOAMIDE
Cyclobutane-1,1-dicarboxylic acid monoamide is primarily utilized in organic synthesis as a building block for the development of more complex chemical structures. Its unique cyclobutane ring and functional groups make it valuable in the creation of pharmaceutical intermediates, particularly in the design of bioactive molecules. The compound is often employed in medicinal chemistry to explore novel drug candidates, especially those targeting specific enzymes or receptors. Additionally, it serves as a precursor in the synthesis of polymers and advanced materials, where its rigid ring structure can impart desirable mechanical or thermal properties. Its applications also extend to research in supramolecular chemistry, where it is used to study molecular interactions and self-assembly processes.
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