Optical device
View Patent ↗The present application relates to an optical device. The present application provides an optical device capable of varying transmittance, and such an optical device can be used for various applications such as eyewear, for example, sunglasses or AR (augmented reality) or VR (virtual reality) eyewear, an outer wall of a building or a sunroof for a vehicle.
1. An optical device comprising:
two outer substrates;
an active liquid crystal element film disposed between the two outer substrates,
wherein the active liquid crystal element film having an active liquid crystal layer which contains a liquid crystal compound and is capable of switching between a first oriented state and a second oriented state;
a buffer layer present between the active liquid crystal element film and one of the two outer substrates, the buffer layer having a Young's modulus of 1 MPa or less;
a polarizer disposed between the two outer substrates; and
an adhesive film disposed between the two outer substrates,
wherein the adhesive film encapsulates the active liquid crystal element film, the polarizer, and the buffer layer, and
wherein the adhesive film exists between the two outer substrates and the active liquid crystal element film, between the active liquid crystal element film and the polarizer, between the buffer layer and the polarizer, between the buffer layer and the two outer substrates, between the polarizer and the two outer substrates, and on sides of the active liquid crystal element film.
2. The optical device according to claim 1 , wherein the buffer layer comprises an acrylate-based, urethane-based, rubber-based or silicone-based oligomer or polymer material.
3. The optical device according to claim 1 , wherein the buffer layer comprises an acrylate-based, urethane-based, rubber-based or silicone-based adhesive layer or pressure-sensitive adhesive layer.
4. The optical device according to claim 1 , wherein the active liquid crystal element film and the polarizer are disposed such that an angle formed between an average optical axis of the active liquid crystal layer in the first oriented state and a light absorption axis of the polarizer is in a range of 80 degrees to 100 degrees or in a range of 35 degrees to 55 degrees.
5. The optical device according to claim 1 , wherein the active liquid crystal element film further comprises:
two base films, wherein the active liquid crystal layer is disposed between the two base films.
6. The optical device according to claim 5 , wherein the active liquid crystal element film further comprises:
one or more spacers disposed between the two base films, wherein the one or more spacers for maintaining an interval of the two base films.
7. The optical device according to claim 5 , wherein the active liquid crystal element film further comprises:
two alignment films, wherein one alignment film is disposed between the active liquid crystal layer and one of the two base films, and the other alignment film is disposed between the active liquid crystal layer and the other of the two base films.
8. The optical device according to claim 7 , wherein an angle formed between alignment directions of the two alignment films is in a range of −10 degrees to 10 degrees, or in a range of 80 degrees to 100 degrees.
9. The optical device according to claim 8 , wherein an angle formed between an alignment direction of one of the two alignment films disposed closer to the polarizer and a light absorption axis of the polarizer is in a range of 80 degrees to 100 degrees.
10. The optical device according to claim 1 , wherein the active liquid crystal element film is a folded film.
11. The optical device according to claim 1 , wherein the adhesive film has a front phase difference of 100 nm or less.
12. The optical device according to claim 1 , wherein the adhesive film has an absolute value of a thickness direction phase difference of 200 nm or less.
13. The optical device according to claim 1 , wherein the Young's modulus of the adhesive film in a range of 0.1 to 100 MPa.
14. An automobile comprising a body on which one or more openings are formed; and the optical device of claim 1 attached to the openings.