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HS Code |
249198 |
| Chemical Name | Ethyl Cyanoglyoxylate-2-Oxime |
| Cas Number | 623-73-4 |
| Molecular Formula | C5H6N2O3 |
| Molar Mass | 142.11 g/mol |
| Appearance | White to off-white crystalline powder |
| Boiling Point | Decomposes before boiling |
| Melting Point | 86-89°C |
| Solubility | Soluble in organic solvents such as ethanol and acetone |
| Density | 1.24 g/cm³ |
| Purity | Typically ≥98% |
| Storage Temperature | Store at 2-8°C (refrigerated) |
| Stability | Stable under recommended storage conditions |
| Hazard Statements | May cause irritation to skin, eyes, and respiratory tract |
As an accredited Ethyl Cyanoglyoxylate-2-Oxime factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Ethyl Cyanoglyoxylate-2-Oxime is supplied in a 5-gram amber glass bottle with a secure screw cap and hazard labeling. |
| Shipping | Ethyl Cyanoglyoxylate-2-Oxime should be shipped in tightly sealed, chemical-resistant containers under cool, dry conditions. It requires proper labeling as a hazardous material, with transport in accordance with local, national, and international chemical safety regulations. Avoid exposure to heat or direct sunlight during shipping to maintain stability and prevent decomposition. |
| Storage | Ethyl Cyanoglyoxylate-2-Oxime should be stored in a cool, dry, and well-ventilated area, away from direct sunlight, heat sources, and incompatible substances such as strong oxidizers and acids. Keep the chemical tightly sealed in a corrosion-resistant container, clearly labeled. Avoid moisture exposure and store at recommended temperatures as per the manufacturer’s safety data sheet (SDS). Handle with appropriate protective equipment. |
Applications of Ethyl Cyanoglyoxylate-2-Oxime in Industrial ManufacturingEthyl Cyanoglyoxylate-2-Oxime serves as a specialty intermediate in various precision chemical processes. Our manufacturing team supplies this compound to a select range of mature industrial sectors, focusing on high-value transformation steps. Below, we outline distinct downstream applications with technical integration details pertinent to each market. 1. Active Pharmaceutical Ingredient (API) Synthesis: Pyridine DerivativesPharmaceutical manufacturers use this compound as a key building block in synthesizing substituted pyridine derivatives. These intermediates are foundational in the production of antihypertensive and anti-infective APIs. Our material enters multi-step synthesis routes, requiring precise reagent handling and stringent batch traceability throughout GMP-compliant facilities. Downstream, it supports nucleophilic addition and cyclization steps due to its oxime reactivity. Trace residuals are strictly monitored to meet end-product impurity thresholds set by regulatory authorities. Industry compliance standards
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2. Agrochemical Intermediates: Pyridinecarboxylic Acid HerbicidesAgrochemical firms leverage the compound during the manufacture of pyridinecarboxylic acid intermediates, critical to the synthesis of selective herbicides. It acts in controlled nucleophilic substitution and ring formation steps. Operators adjust process parameters to control byproduct formation, essential for downstream biological efficacy and environmental safety. Usage demands conformance with agro-intermediate manufacturing standards, due to stringent residue and trace element specifications before formulation. Industry compliance standards
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3. Specialty Chemical Manufacturing: High-Performance Coating AdditivesIndustrial coatings producers use this resource as a precursor for functional additives, especially in high-durability and anti-corrosive systems. It integrates into the synthetic route of organic corrosion inhibitors, where exact oxime-based modification enhances protective film formation on metal substrates. Formulators must manage by-product separation and post-reaction purification, ensuring consistency with downstream application performance standards for industrial coatings. Industry compliance standards
Typical usage ratio
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4. Analytical Chemistry: Derivatization Reagents for LC-MSAnalytical laboratories and reagent manufacturers apply the raw material as a derivatizing agent to enhance LC-MS signal for carbonyl compound analysis. Its oxime moiety forms stable adducts with trace-level aldehydes and ketones. Accurate weighing and reagent-grade dilutions are crucial for consistent analytical results. The material must meet ultra-high purity and batch reproducibility, as laboratory applications require conformance with international reference standards for trace detection. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
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