IP Library › Granted Patent US 9,651,715
Granted Patent B2
US 9,651,715 · App. 14/387,338 · Granted May 16, 2017

Nanostructured material and method of making the same

Inventors: Ta-Hua Yu (Woodbury, MN); Moses M. David (Woodbury, MN); Abdujabar K. Dire (Wodbury, MN); Albert I. Everaerts (Oakdale, MN); William Blake Kolb (West Lakeland, MN); Todd M. Sandman (Cumberland, WI); Shunsuke Suzuki (Kawasaki, JP); Scott A. Walker (White Bear Lake, MN)
Assignee: 3M INNOVATIVE PROPERTIES COMPANY
G02B1/118B82Y20/00G02B1/111G02B1/12G02B1/04G02B2207/101
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Quick Facts
Patent No.
US 9,651,715
App. No.
14/387,338
Granted
May 16, 2017
Kind
B2
Abstract

Nanostructured material exhibiting a random anisotropic nanostructured surface, and exhibiting an average reflection at 60 degrees off angle less than 1 percent. The nanostructured materials are useful, for example, for optical and optoelectronic devices, displays, solar, light sensors, eye wear, camera lens, and glazing.

Claims (8)

1. A nanostructured layer comprising a polymeric matrix and a nanoscale dispersed phase, the layer having a random anisotropic nanostructured surface, the random anisotropic nanostructured surface having an average reflection at 60 degrees off angle less than 1 percent, the layer having a thickness of at least 500 nm, and the layer having a visible light transmission through the thickness of the layer at 90 degrees to the random anisotropic nanostructured surface of at least 94 percent.

2. The nanostructured layer of claim 1 , wherein the nanoscale phase is present in a range from 60 nm to 90 nm in size, in a range from 30 nm to 50 nm in size, and less than 25 nm in size, and wherein the nanoscale phase is present in a range from 0.25 wt. % to 50 wt. % for sizes in the range from 60 nm to 90 nm, 1 wt. % to 50 wt. % for sizes in a range from for sizes in the range from 30 nm to 50 nm, and 0.25 wt. % to 25 wt. % for sizes less than 25 nm, based on the total weight of the polymeric matrix and nanoscale phase.

3. The nanostructured layer of claim 1 , wherein the nanoscale phase is present in a range from 60 nm to 90 nm in size, in a range from 30 nm to 50 nm in size, and less than 25 nm in size, and wherein the nanoscale phase is present in the range from 0.1 vol. % to 35 vol. % for sizes in the range from 60 nm to 90 nm, 0.1 vol. % to 25 vol. % for sizes in a range from 30 nm to 50 nm, and 0.1 vol. % to 10 vol. % for sizes less than 25 nm, based on the total volume of the polymeric matrix and nanoscale phase.

4. The nanostructured layer of claim 1 , wherein the nanoscale phase comprises submicrometer particles.

5. The nanostructured layer of claim 1 , wherein the submicrometer particles are covalently bonded to the polymeric matrix.

6. An article comprising a substrate having first and second generally opposed major surfaces with the layer of claim 1 on the first major surface.

7. The article of claim 6 having a haze less than 2 percent.

8. The article of claim 6 , further comprising an optically clear adhesive disposed on the second surface of the substrate, the optically clear adhesive having at least 90% transmission in visible light and less than 5% haze.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2014
From: YU, TA-HUA; DAVID, MOSES M.; DIRE, ABDUJABAR K.; EVERAERTS, ALBERT I.; KOLB, WILLIAM BLAKE; SANDMAN, TODD M.; SUZUKI, SHUNSUKE; WALKER, SCOTT A.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 033797/0252 →
Continuity (2)
Provisional Application 61615646 · Mar 26, 2012
Related Publication 20150077854A1 · Mar 19, 2015