IP Library Granted Patent US 8,513,531
Granted Patent B2
US 8,513,531 · App. 12/804,175 · Granted Aug 20, 2013

Electrodynamic arrays having nanomaterial electrodes

Inventors: Steven Trigwell (Merritt Island, FL); Alexandru S. Biris (Little Rock, AR); Carlos I. Calle (Merritt Island, FL)
Assignee: The Board of Trustees of the University of Arkansas
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Quick Facts
Patent No.
US 8,513,531
App. No.
12/804,175
Granted
Aug 20, 2013
Kind
B2
Abstract

An electrodynamic array of conductive nanomaterial electrodes and a method of making such an electrodynamic array. In one embodiment, a liquid solution containing nanomaterials is deposited as an array of conductive electrodes on a substrate, including rigid or flexible substrates such as fabrics, and opaque or transparent substrates. The nanomaterial electrodes may also be grown in situ. The nanomaterials may include carbon nanomaterials, other organic or inorganic nanomaterials or mixtures.

Claims (15)

1. An electrodynamic array, comprising:

a substrate;

a multi-phase alternating current power source;

a first electrode pattern comprising a first set of electrodes printed onto the substrate using ink comprising conductive nanomaterials, wherein the first electrode pattern is electrically connected to the power source to provide power to the first set of electrodes; and

a second electrode pattern comprising a second set of electrodes printed onto the substrate using ink comprising conductive nanomaterials, wherein the second electrode pattern is electrically connected to the power source to provide power to the second set of electrodes that is out of phase with the power that the power source provides to the first set of electrodes;

wherein the second set of electrodes is interleaved with the first set of electrodes on the substrate to repel dust from the surface when power is provided to the first electrode pattern and the second electrode pattern by the power source.

2. The electrodynamic array of claim 1 , wherein said nanomaterials comprise carbon nanomaterials.

3. The electrodynamic array of claim 2 wherein said carbon nanomaterials are selected from the group consisting of single, double and multi-wall carbon nanotubes, nanofibers, graphitic sheets, graphenes, graphite, fullerenes and a combination of any of the preceding.

4. The electrodynamic array of claim 1 , wherein said nanomaterials are selected from the group consisting of organic and inorganic nanomaterials, including metal nanostructures, metal oxide nanostructures, nanocrystals, polymeric nanostructures, DNA, RNA, proteins, quantum dot crystals and any combination of the preceding.

5. The electrodynamic array of claim 1 , wherein comprise a plurality of layers of nanomaterials.

6. The electrodynamic array of claim 1 , wherein said substrate is a rigid substrate.

7. The electrodynamic array of claim 1 , wherein said substrate is a flexible substrate.

8. The electrodynamic array of claim 7 , wherein said flexible substrate is a transparent material.

9. The electrodynamic array of claim 7 , wherein said flexible substrate is an opaque material.

10. The electrodynamic array of claim 7 , wherein said flexible substrate is a fabric material.

Assignments (4)
CONFIRMATORY LICENSE Recorded Feb 20, 2013
From: ASRC AEROSPACE CORPORATION
To: NASA
Reel/Frame 029929/0357 →
CONFIRMATORY LICENSE Recorded Feb 20, 2013
From: UNIVERSITY OF ARKANSAS AT LITTLE ROCK
To: NASA
Reel/Frame 029929/0581 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2012
From: CALLE, CARLOS I.
To: UNITED STATES OF AMERICA AS REPRESENTED BY THE ADMINISTRATOR OF THE NATIONAL AERONAUTICS AND SPACE ADMINISTRATION
Reel/Frame 029003/0933 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2010
From: BIRIS, ALEXANDRU S.
To: BOARD OF TRUSTEES OF THE UNIVERSITY OF ARKANSAS
Reel/Frame 025214/0103 →
Continuity (2)
Provisional Application 61270951 · Jul 15, 2009
Related Publication 20110011629A1 · Jan 20, 2011