IP Library Granted Patent US 8,841,548
Granted Patent B2
US 8,841,548 · App. 13/199,323 · Granted Sep 23, 2014

Resonance-shifting luminescent solar concentrators

Inventors: Noel Christopher Giebink (Downers Grove, IL); Gary P. Wiederrecht (Elmhurst, IL); Michael R. Wasielewski (Glenview, IL)
Assignee: Uchicago Argonne, LLC
H01L31/055Y02E10/50
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Quick Facts
Patent No.
US 8,841,548
App. No.
13/199,323
Granted
Sep 23, 2014
Kind
B2
Abstract

An optical system and method to overcome luminescent solar concentrator inefficiencies by resonance-shifting, in which sharply directed emission from a bi-layer cavity into a glass substrate returns to interact with the cavity off-resonance at each subsequent reflection, significantly reducing reabsorption loss en route to the edges. In one embodiment, the system comprises a luminescent solar concentrator comprising a transparent substrate, a luminescent film having a variable thickness; and a low refractive index layer disposed between the transparent substrate and the luminescent film.

Claims (19)

1. A luminescent solar concentrator comprising:

a transparent substrate;

a luminescent film having a laterally varying thickness, the laterally varying thickness defining a first thickness at a first location and a second thickness at a second location; and

a low refractive index layer, having a refractive index of about 1.1 to about 1.2, disposed between the transparent substrate and the luminescent film;

wherein the first location is spaced from the second location such that resonant emission from either of the first and the second locations of the luminescent film does not re-encounter that same resonance in reflectivity.

2. The luminescent solar concentrator of claim 1 , wherein the luminescent film is evanescently coupled to the transparent substrate.

3. The luminescent solar concentrator of claim 1 , wherein the luminescent film comprises a thickness of one micron or less and the lateral varying thickness of the luminescent film comprises a step-wise thickness variation.

4. The luminescent solar concentrator of claim 3 , wherein the luminescent film thickness varies between 10-100 nanometers.

5. The luminescent solar concentrator of claim 1 , wherein the luminescent film is selected from the group consisting of green-emitting polymer poly 9,9-di-n-octylfluorene-alt-benzothiadiazole, a perylene-based dye, and a colloidal quantum dot.

6. The luminescent solar concentrator of claim 1 , wherein the low refractive index layer comprises a refractive index of about 1.14.

7. The luminescent solar concentrator of claim 1 , wherein light emits through the luminescent film at a first position, is transmitted within the transparent substrate, and is reflected off the luminescent film at a second position, the luminescent film thickness at the first position being different than the thickness at the second position.

8. The luminescent solar concentrator of claim 7 , wherein the light reflecting from the second position is off-resonance from the light emitted through the first position.

9. The luminescent solar concentrator of claim 1 further comprising a plurality of photovoltaic cells operatively connected to the transparent substrate and configured to receive luminescence from the transparent substrate.

10. The luminescent solar concentrator of claim 1 further comprising a photovoltaic cell operatively connected to an edge of the transparent substrate and configured to receive luminescence from the transparent substrate.

11. The luminescent solar concentrator of claim 10 , wherein edges of the transparent substrate not operatively connected to the photovoltaic cell are configured to be reflective.

12. The luminescent solar concentrator of claim 1 , wherein the transparent substrate is glass.

13. The luminescent solar concentrator of claim 1 , wherein the transparent substrate is plastic.

14. The luminescent solar concentrator of claim 1 , wherein the luminescent film is continuous from the first location to the second location.

15. The luminescent solar concentrator of claim 1 , wherein the transparent substrate has a third thickness, the second location is spaced from the first location by a lateral distance equal to the third thickness, and the difference between the first thickness and the second thickness is less than 100 nanometers.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 4, 2014
From: GIEBINK, NOEL CHRISTOPHER; WIEDERRECHT, GARY P.; WASIELEWSKI, MICHAEL R.
To: UCHICAGO ARGONNE, LLC
Reel/Frame 033027/0136 →
CONFIRMATORY LICENSE Recorded Sep 10, 2012
From: UCHICAGO ARGONNE, LLC
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 028949/0923 →
Continuity (1)
Related Publication 20130050860A1 · Feb 28, 2013