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Cyanates
Lethane
(112-56-1)-
Industrial Grade / 99.0%
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Industrial Grade / 99%
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Industrial Grade / 99.0%
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Industrial Grade / 99%
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Industrial Grade / 99%
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S-[N-BENZYL(THIOCARBAMOYL)]-L-CYSTEINE
(35446-36-7)-
Industrial Grade / 99.00%
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2,4-dichlorobenzylthiocyanate
(7534-61-4)-
Industrial Grade / 99%
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Industrial Grade / 99.0%
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Mercuric thiocyanate
(592-85-8)-
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Industrial Grade / 99%
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Different Grade / 99.9%
$0.1/KG EXW
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cesium thiocyanate
(3879-01-4)-
Industrial Grade / 99%
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Industrial Grade / 99%
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Industrial Grade / 99%
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Industrial Grade / 99%
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Industrial Grade / 99%
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Source Cyanates Raw Materials by Region
Frequently Asked Questions
Cyanates are organic or inorganic compounds containing the -OCN functional group. They are widely used as key reagents in chemical synthesis, particularly in the production of urethanes, isocyanurates, and carbamates. Cyanates also serve as intermediates in the manufacture of pharmaceuticals, agrochemicals, and specialty polymers due to their high reactivity and versatility.
While all three contain the cyanide group, they differ in structure and reactivity:- Cyanate (OCN⁻) has oxygen bonded to carbon.- Isocyanate (NCO⁻) has nitrogen bonded to carbon and is highly reactive, commonly used in polyurethane production.- Thiocyanate (SCN⁻) features sulfur instead of oxygen and is often used in analytical chemistry and coordination compounds.Understanding these distinctions is crucial for safe handling and appropriate application in industrial processes.
Cyanates should be stored in a cool, dry, well-ventilated area away from moisture, heat sources, and incompatible materials such as strong acids or reducing agents. Proper personal protective equipment (PPE)—including gloves, goggles, and lab coats—must be worn during handling. Safety data sheets (SDS) should always be consulted to follow recommended protocols for storage, handling, and emergency response.
Metal cyanates such as potassium cyanate (KOCN) are commonly used in organic synthesis, including the preparation of urea derivatives and heterocyclic compounds. They also find use in electroplating baths, textile dyeing, and as catalysts or reagents in pharmaceutical manufacturing. Their role as a source of the cyanate ion makes them valuable in controlled chemical transformations.
To ensure high-quality cyanate compounds, request a Certificate of Analysis (CoA) that includes purity percentage, impurity profile, and relevant test methods (e.g., HPLC, GC, or titration). Reputable suppliers should comply with ISO or GMP standards and provide batch-specific documentation. Additionally, consider third-party testing if the application demands stringent quality control, especially for pharmaceutical or research use.