Methanol-D4
D,99.8% (0.05% v/v TMS)
- Product Code: 92687
Alias:
Deuterated methanol
CAS:
811-98-3
Molecular Weight: | 36.07 g./mol | Molecular Formula: | CD₄O |
---|---|---|---|
EC Number: | 212-378-6 | MDL Number: | MFCD00044637 |
Melting Point: | -99 °C | Boiling Point: | 65.4 °C(lit.) |
Density: | 0.888 g/mL at 25 °C(lit.) | Storage Condition: | 2~8°C, combustible area |
Product Description:
Methanol-D4 is widely used as a solvent in nuclear magnetic resonance (NMR) spectroscopy due to its deuterated nature, which minimizes interference with the analysis of other compounds. It serves as a valuable tool in research and development, particularly in the study of molecular structures and dynamics in organic chemistry. Additionally, it is employed in the synthesis of deuterated compounds, which are essential in various scientific investigations, including metabolic studies and pharmaceutical research. Its use in labeling experiments also aids in tracing chemical pathways and understanding reaction mechanisms.
Product Specification:
Test | Specification |
---|---|
MASS BALANCE | 0.045 % 0.055 % |
PROTON NMR ATOM D | 99.8 100% |
WATER BY KARL FISCHER | 0 0.025% |
APPEARANCE | COLORLESS LIQUID |
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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0.600 | 10-20 days | Ft9,481.22 |
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5.000 | 10-20 days | Ft40,941.61 |
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10.000 | 10-20 days | Ft58,826.63 |
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10.000 | 10-20 days | Ft80,590.33 |
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50.000 | 10-20 days | Ft255,454.10 |
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Methanol-D4
Methanol-D4 is widely used as a solvent in nuclear magnetic resonance (NMR) spectroscopy due to its deuterated nature, which minimizes interference with the analysis of other compounds. It serves as a valuable tool in research and development, particularly in the study of molecular structures and dynamics in organic chemistry. Additionally, it is employed in the synthesis of deuterated compounds, which are essential in various scientific investigations, including metabolic studies and pharmaceutical research. Its use in labeling experiments also aids in tracing chemical pathways and understanding reaction mechanisms.
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