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Cyanate ester
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Cyanate esters are chemical compounds in which the atom of the is replaced by an group (for example group). The resulting compound is termed a , with the formula , where R is an organyl group. Cyanate esters contain a cyanate group .


Use in resins
Cyanate esters can be cured and postcured by heating, either alone at elevated temperatures or at lower temperatures in presence of a suitable catalyst. The most common catalysts are transition metal complexes of cobalt, copper, manganese and zinc. The result is a material with a very high glass-transition temperature (Tg) of up to 400 °C, and a very low dielectric constant, providing excellent long term thermal stability at elevated end use temperatures, very good fire, smoke and toxicity performance and specific suitability for printed circuit boards installed in critical electrical devices. This is also due to its low moisture uptake. This property, together with a higher toughness compared to epoxies, also makes it a valuable material in aerospace applications. For example, the Lynx Mark II is primarily made of carbon/cyanate ester.

The chemistry of the cure reaction is a of three CN groups to a ring. When the monomer contains two cyanate groups the resulting structure is a 3D . Thermoset polymer matrix properties can be fine tuned by the choice of in the bisphenolic compound. and based cyanate esters are the major products; and are also used. The aromatic ring of the bisphenol can be substituted with an group for improved toughness of the material. Cyanate esters can also be mixed with to form or with epoxy resins to optimize the end use properties.

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