Abstract:
A method for applying a protective coating to an electro-optical component includes positioning the electro-optical component in a chamber (step 32) and applying a coating composition (step 35) to at least one surface of the electro-optical component to form the protective coating thereon. The coating composition may include fluorinated poly (phenylene ether ketone) and an anti-reflection agent. The anti-reflection agent may include at least one of an inorganic salt, an organofunctionalized additive, and an erbium dopant, for example.
Abstract:
A method for applying a protective coating to an electro-optical component includes positioning the electro-optical component in a chamber and applying a coating composition to at least one surface of the electro-optical component to form the protective coating thereon. The coating composition may include fluorinated poly(phenylene ether ketone) and an anti-reflection agent. The anti-reflection agent may include at least one of an inorganic salt, an organofunctionalized additive, and an erbium dopant, for example.
Abstract:
A method for applying a protective coating to an electro-optical component includes positioning the electro-optical component in a chamber and applying a coating composition to at least one surface of the electro-optical component to form the protective coating thereon. The coating composition may include fluorinated poly(phenylene ether ketone) and an anti-reflection agent. The anti-reflection agent may include at least one of an inorganic salt, an organofunctionalized additive, and an erbium dopant, for example.
Abstract:
A method for applying a protective coating to an electro-optical component includes positioning the electro-optical component in a chamber and applying a coating composition to at least one surface of the electro-optical component to form the protective coating thereon. The coating composition may include fluorinated poly(phenylene ether ketone) and an anti-reflection agent. The anti-reflection agent may include at least one of an inorganic salt, an organofunctionalized additive, and an erbium dopant, for example.
Abstract:
A method for applying a protective coating to an electro-optical component includes positioning the electro-optical component in a chamber (step 32) and applying a coating composition (step 35) to at least one surface of the electro-optical component to form the protective coating thereon. The coating composition may include fluorinated poly (phenylene ether ketone) and an anti- reflection agent. The anti-reflection agent may include at least one of an inorganic salt, an organofunctionalized additive, and an erbium dopant, for example.
Abstract:
A method for applying a protective coating to an electro-optical component includes positioning the electro-optical component in a chamber (step 32) an d applying a coating composition (step 35) to at least one surface of the electro-optical component to form the protective coating thereon. The coatin g composition may include fluorinated poly (phenylene ether ketone) and an ant i- reflection agent. The anti-reflection agent may include at least one of an inorganic salt, an organofunctionalized additive, and an erbium dopant, for example.