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HS Code |
740366 |
| Chemical Name | 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone |
| Molecular Formula | C10H8O6 |
| Molecular Weight | 224.17 g/mol |
| Appearance | White to off-white solid |
| Melting Point | 110-115°C |
| Solubility In Water | Slightly soluble |
| Cas Number | 2746-19-2 |
| Boiling Point | Decomposes before boiling |
| Density | Approx. 1.62 g/cm3 |
| Storage Temperature | 2-8°C |
| Purity | Typically >98% |
| Stability | Stable under recommended conditions |
| Odor | Odorless |
As an accredited 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The 25g package is a sealed, amber glass bottle with a tamper-evident cap and clearly labeled chemical identification and safety warnings. |
| Container Loading (20′ FCL) | 20′ FCL container loads approximately **10 metric tons** of 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone, packed securely in fiber drums. |
| Shipping | **Shipping Description:** 1,2-Dihydroxy-1,2-cyclobutanediacrylic acid di-G-lactone should be shipped in tightly sealed containers, protected from moisture, heat, and direct sunlight. Use appropriate labeling per chemical shipping regulations. Transport via ground or air in compliance with local, national, and international chemical safety guidelines to prevent leaks or degradation. |
| Storage | 1,2-Dihydroxy-1,2-cyclobutanediacrylic acid di-G-lactone should be stored in a cool, dry, and well-ventilated area, protected from direct sunlight and moisture. Keep container tightly closed and away from incompatible substances such as strong oxidizing agents. Use non-reactive containers (e.g., glass or certain plastics). Label clearly and store in a secure area, following all safety protocols and local chemical storage regulations. |
| Shelf Life | Shelf life: Store at 2–8°C, protected from light and moisture; stable for at least 2 years under recommended conditions. |
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Purity 99.5%: 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone with 99.5% purity is used in advanced polymer synthesis, where it ensures high monomer conversion rates. Molecular weight 260 g/mol: 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone of 260 g/mol molecular weight is used in pharmaceutical intermediate production, where it enables consistent batch-to-batch reproducibility. Melting point 186°C: 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone with a melting point of 186°C is used in high-temperature resin formulations, where it maintains structural stability during processing. Particle size <10 µm: 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone with particle size below 10 µm is used in specialty coatings manufacturing, where it provides superior dispersion and surface uniformity. Thermal stability up to 210°C: 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone having thermal stability up to 210°C is used in composite material fabrication, where it prevents thermal degradation under curing conditions. Viscosity grade 120 cP: 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone of 120 cP viscosity grade is used in adhesive formulation, where it imparts optimal flow and binding properties. Solubility in ethanol 85 g/L: 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone with solubility of 85 g/L in ethanol is used in liquid phase extraction, where it achieves efficient solute recovery. Water content <0.1%: 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone with water content less than 0.1% is used in moisture-sensitive syntheses, where it prevents unwanted hydrolysis reactions. Shelf life 24 months: 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone with a shelf life of 24 months is used in contract manufacturing, where it ensures product stability during long-term storage. Optical purity 98% ee: 1,2-Dihydroxy-1,2-Cyclobutanediacrylic Acid Di-G-Lactone with 98% enantiomeric excess is used in chiral catalyst production, where it guarantees stereochemical specificity in target reactions. |
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