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US Patent 10234599 Anti-reflective film

Patent 10234599 was granted and assigned to LG Chem on March, 2019 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Patent Applicant
LG Chem
LG Chem
Current Assignee
LG Chem
LG Chem
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10234599
Date of Patent
March 19, 2019
Patent Application Number
15668437
Date Filed
August 3, 2017
Patent Citations Received
‌
US Patent 11415726 Anti-reflective film and manufacturing method thereof
‌
US Patent 11262481 Anti-reflective film
‌
US Patent 11275199 Anti-reflective film
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US Patent 11353628 Anti-reflective film
‌
US Patent 10627547 Anti-reflective film
‌
US Patent 10627548 Anti-reflective film and manufacturing method thereof
‌
US Patent 10663623 Anti-reflective film
‌
US Patent 10802178 Anti-reflective film
...
Patent Primary Examiner
‌
William R Alexander
Patent abstract

Disclosed herein is an anti-reflective film comprising: a hard coating layer; and a low-refractive layer containing a binder resin and hollow inorganic nanoparticles and solid inorganic nanoparticles which are dispersed in the binder resin, wherein a ratio of an average particle diameter of the solid inorganic nanoparticles to an average particle diameter of the hollow inorganic nanoparticles is 0.26 to 0.55, and wherein at least 70 vol % of the entire solid inorganic nanoparticles are present within a distance corresponding to 50% of an entire thickness of the low-refractive layer from the interface between the hard coating layer and the low-refractive layer, and an anti-reflective film comprising: a hard coating layer containing a binder resin containing a photocurable resin, and organic or inorganic fine particles dispersed in the binder resin; and a low-refractive layer containing a binder resin and hollow inorganic nanoparticles and solid inorganic nanoparticles which are dispersed in the binder resin, wherein a ratio of an average particle diameter of the solid inorganic nanoparticles to an average particle diameter of the hollow inorganic nanoparticles is 0.15 to 0.55, and wherein at least 70 vol % of the entire solid inorganic nanoparticles are present within a distance corresponding to 50% of an entire thickness of the low-refractive layer from the interface between the hard coating layer and the low-refractive layer.

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