IP Library Granted Patent US 9,791,741
Granted Patent B2
US 9,791,741 · App. 14/351,634 · Granted Oct 17, 2017

Alignment film, method for forming alignment film, method for adjusting liquid crystal alignment, and liquid crystal display device

Inventors: Hak-Rin Kim (Daegu, KR); Chang Sub Park (Busan, KR); Kyung Il Joo (Daegu, KR); Min Kyu Park (Daegu, KR)
Assignee: Kyungpook National University Industry-Academic Cooperation Foundation
G02F1/1337G02F1/13378G02F1/29G02F2001/133773G02F2001/133776Y10T428/24587
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Quick Facts
Patent No.
US 9,791,741
App. No.
14/351,634
Granted
Oct 17, 2017
Kind
B2
Abstract

Provided is a method for controlling liquid crystal alignment. An alignment film has a plurality of first grooves which are elongated in a first direction and area spaced from each other, and a plurality of second grooves which are elongated in a second direction and are spaced from each other by crossing said first grooves. Multistable liquid crystal alignment is enabled selectively by adjusting an aspect ratio of said first grooves and an aspect ratio of said second grooves.

Claims (32)

1. An alignment film for aligning liquid crystals of a liquid crystal display (LCD), the alignment film comprising:

a plurality of first grooves extending in a first direction and spaced from one another; and

a plurality of second grooves extending in a second direction to intersect the first grooves and spaced from one another,

wherein a ratio of a first azimuthal anchoring energy according to the first grooves to a second azimuthal anchoring energy according to the second grooves is about 0 or 1, and

the liquid crystals on the alignment film are arranged in a multi-domain state or multi-stable state according to the ratio of the first azimuthal anchoring energy to the second azimuthal anchoring energy.

2. The alignment film of claim 1 , wherein widths and depths of the first grooves are greater than the widths and depths of the second grooves, respectively.

3. An LCD comprising:

a first substrate and a second substrate facing each other; and

a first alignment film and a second alignment film for aligning liquid crystals and being on opposing surfaces of the first substrate and the second substrate, respectively,

wherein the first alignment film and the second alignment film each comprises:

a plurality of first grooves extending in a first direction and spaced from one another; and

a plurality of second grooves extending in a second direction to intersect the first grooves and spaced from one another,

wherein a ratio of a first azimuthal anchoring energy according to the first grooves to a second azimuthal anchoring energy according to the second grooves is about 0 or 1, and

the liquid crystals on the first alignment film and the second alignment are arranged in a multi-domain state or multistable state according to the ratio of the first azimuthal anchoring energy to the second azimuthal anchoring energy.

4. A multi-stable LCD comprising:

a first substrate and a second substrate facing each other; and

a first alignment film and a second alignment film for aligning liquid crystals and being on opposing surfaces of the first substrate and the second substrate, respectively,

wherein the first alignment film and the second alignment film each comprises:

a plurality of first grooves extending in a first direction and spaced from one another; and

a plurality of second grooves extending in a second direction to intersect the first grooves and spaced from one another, and

wherein a ratio of a first azimuthal anchoring energy according to the first grooves to a second azimuthal anchoring energy according to the second grooves is about 1, and

the liquid crystals on the first alignment film and the second alignment are arranged in a multi-stable state according to the ratio of the first azimuthal anchoring energy to the second azimuthal anchoring energy.

5. A multi-domain LCD comprising:

a first substrate and a second substrate facing each other; and

a first alignment film and a second alignment film for aligning liquid crystals and being on opposing surfaces of the first substrate and the second substrate, respectively,

wherein the first alignment film and the second alignment film each comprises:

a plurality of first grooves extending in a first direction and spaced from one another; and

a plurality of second grooves extending in a second direction to intersect the first grooves and spaced from one another, and

wherein a ratio of a first azimuthal anchoring energy according to the first grooves to a second azimuthal anchoring energy according to the second grooves is about 0, and

the liquid crystals on the first alignment film and the second alignment are arranged in a multi-domain state according to the ratio of the first azimuthal anchoring energy to the second azimuthal anchoring energy.

6. A liquid crystal alignment method applied to an LCD, the method comprising forming a plurality of first grooves extending in a first direction and spaced from one another and a plurality of second grooves extending in a second direction to intersect the first grooves and spaced from one another,

wherein one of multi-stable liquid crystal alignment and multi-domain liquid crystal alignment is selectively enabled by controlling a ratio of a first azimuthal anchoring energy according to the first grooves to a second azimuthal anchoring energy according to the second grooves to be about 0 or 1.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2014
From: KIM, HAK-RIN; PARK, CHANG SUB; JOO, KYUNG IL; PARK, MIN KYU
To: KYUNGPOOK NATIONAL UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATION
Reel/Frame 032665/0256 →
Continuity (1)
Related Publication 20140247417A1 · Sep 4, 2014