IP Library Granted Patent US 11,246,247
Granted Patent B2
US 11,246,247 · App. 16/630,104 · Granted Feb 8, 2022

Electromagnetic interference shielding film having a laminated structure including a stack of metal nanoplates and a nano electrode including the same

Inventors: Ho-Koang Choi (Jeollabuk-do, KR); Byung Joon Moon (Jeollabuk-do, KR); Dong Su Lee (Jeollabuk-do, KR); Sukang Bae (Jeollabuk-do, KR); Seoung-Ki Lee (Jeollabuk-do, KR); Sang Hyun Lee (Jeollabuk-do, KR); Tae-Wook Kim (Jeollabuk-do, KR)
Assignee: Korea Institute of Science and Technology
H05K9/0083H01B13/228H01B13/30
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Quick Facts
Patent No.
US 11,246,247
App. No.
16/630,104
Granted
Feb 8, 2022
Kind
B2
Abstract

An electromagnetic wave shielding film includes a substrate; and an electromagnetic wave shielding layer disposed on the substrate and including a laminated structure having a planar shape and including a stack of metal nanoplates, wherein each metal nanoplate of the stack of metal nanoplates is staggered with respect to one or more other metal nanoplate of the stack of metal nanoplates so that the laminated structure has pores defined therein and between laminated structures in a stack of laminates structures. An additional embodiment of an electromagnetic wave shielding film includes an electromagnetic wave shielding layer including a composite of a polymer resin matrix composed of a polymer and at least one metal nanoplate, wherein each metal nanoplate of the at least one metal nanoplate is staggered with respect to one or more other metal nanoplate of the at least one metal nanoplate so that the composite has pores defined therein.

Claims (22)

1. An electromagnetic wave shielding film, comprising:

a substrate; and

an electromagnetic wave shielding layer disposed on the substrate and comprising a laminated structure having a planar shape and including a stack of metal nanoplates,

wherein each metal nanoplate of the stack of metal nanoplates is staggered with respect to one or more other metal nanoplate of the stack of metal nanoplates so that the laminated structure has pores defined therein, and

wherein the electromagnetic wave shielding layer comprises a plurality of laminated structures that are stacked and adjacent laminated structures of the plurality of laminated structures define pores therebetween so that the stack of laminated structures has pores defined therein.

2. An electromagnetic wave shielding film, comprising:

an electromagnetic wave shielding layer comprising a composite of a polymer resin matrix comprised of a polymer and at least one metal nanoplate,

wherein each metal nanoplate of the at least one metal nanoplate is staggered with respect to one or more other metal nanoplate of the at least one metal nanoplate so that the composite has pores defined therein, and

wherein the electromagnetic wave shielding layer comprises a plurality of laminated structures that are stacked and adjacent laminated structures of the plurality of laminated structures define pores therebetween so that the stack of laminated structures has pores defined therein.

3. The electromagnetic wave shielding film according to claim 1 , wherein the metal nanoplate has a face-centered cubic structure (FCC).

4. The electromagnetic wave shielding film according to claim 1 , wherein each metal nanoplate of the stack of metal nanoplates extends in a plane that is a (111) crystal plane.

5. The electromagnetic wave shielding film according to claim 1 , wherein the metal comprises copper, silver, platinum, gold, or a transition metal.

6. The electromagnetic wave shielding film of claim 1 , wherein the laminated structure has a porosity of 20% or more.

7. The electromagnetic wave shielding film of claim 1 , wherein the stack of metal nanoplates has a loading amount of 0.2-100 mg/cm 2 .

8. The electromagnetic wave shielding film according to claim 1 , wherein each metal nanoplate has a coverage of 95% or more based on a total area of the electromagnetic shielding film.

9. The electromagnetic wave shielding film according to claim 1 , wherein the electromagnetic wave shielding layer has a thickness ranging from 50 nm to 500 μm.

10. The electromagnetic wave shielding film according to claim 1 , wherein the electromagnetic wave shielding layer further comprises metal nanoparticles or metal nanowires.

11. The electromagnetic wave shielding film according to claim 1 , wherein the electromagnetic wave shielding film is configured to dissipate heat.

12. A nano electrode comprising the electromagnetic wave shielding film according to claim 1 .

13. The nano electrode according to claim 12 , wherein the nano electrode is a patterned electrode including a pattern of electromagnetic wave shielding films.

14. The nano electrode according to claim 12 , wherein the stack of metal nanoplates has a loading amount of 0.2-100 mg/cm 2 .

15. The nano electrode according to claim 12 , wherein each metal nanoplate has a coverage of 95% or more based on a total area of the electromagnetic shielding film.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2020
From: CHOI, HO-KOANG; MOON, BYUNG JOON; LEE, DONG SU; BAE, SUKANG; LEE, SEOUNG-KI; LEE, SANG HYUN; KIM, TAE-WOOK
To: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
Reel/Frame 051477/0125 →
Priority Claims (2)
KR 10-2018-0001674 · Jan 5, 2018 · national
KR 10-2018-0158285 · Dec 10, 2018 · national
Continuity (1)
Related Publication 20200163261A1 · May 21, 2020
Cited By (1)
US 12,476,021