IP Library Granted Patent US 11,049,989
Granted Patent B2
US 11,049,989 · App. 15/541,146 · Granted Jun 29, 2021

Colorless luminescent solar concentrator, free of heavy metals, based on at least ternary chalcogenide semiconductor nanocrystals with absorption extending to the near infrared region

Inventors: Sergio Brovelli (Milan, IT); Francesco Meinardi (Lecco, IT); Francesco Carulli (Arona, IT)
Assignee: UNIVERSITA' DEGLI STUDI DI MILANO—BICOCCA
H01L31/055H01L31/032H01L31/0322H01L31/035218Y02E10/52Y02E10/541
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Quick Facts
Patent No.
US 11,049,989
App. No.
15/541,146
Granted
Jun 29, 2021
Kind
B2
Abstract

The invention relates to a luminescent solar concentrator comprising a glass or plastic matrix containing colloidal nanocrystals of at least ternary semiconductors based on metals of groups IB and IIIA (groups 11 and 16 respectively in the UIPAC nomenclature) and at least one chalcogen (group VIA, or 16 in the IUPAC nomenclature).

Claims (42)

1. A solar concentrator comprising a body made of polymer material or silica-based glass containing colloidal nanocrystals, wherein the nanocrystals are nanocrystals of at least ternary semiconductor chalcogenides, quaternary semiconductor chalcogenides, or alloys thereof, the nanocrystal size being smaller than the exciton Bohr radius,

wherein the ternary semiconductor chalcogenides comprises transition metals of group 11, in the IUPAC nomenclature, metals of group 13 in the IUPAC nomenclature and chalcogens of group 16 in the IUPAC nomenclature,

wherein the quaternary semiconductor chalcogenides comprises transition metals of group 11 in the IUPAC nomenclature, zinc, metals of group 13 in the IUPAC nomenclature, and at least one chalcogen of group 16 in the IUPAC nomenclature,

wherein the nanocrystals are free of cadmium, lead and mercury such that the solar concentrator is compatible with environmental requirements, and the nanocrystals are re-absorption free,

wherein the body comprises four edges,

wherein the nanocrystals form a homogenous structure in which optical absorption is due to band-to-band transitions of the semiconductor chalcogenides, such that emitted light is not reabsorbed by the nanocrystals and instead propagated to the four edges of the body,

wherein the nanocrystals comprise quaternary semiconductor chalcogenides, and

wherein the nanocrystals have a composition according to the following formulation:

M I M III M VI 2 , wherein

M I is a transition metal of group 11 in the IUPAC nomenclature,

M III is a transition metal of group 13 in the IUPAC nomenclature,

M II is zinc, and

A VI 2 is a chalcogen of group 16 in the IUPAC nomenclature.

2. The solar concentrator according to claim 1 , wherein the nanocrystals comprises metals selected from the group consisting of copper, silver, zinc, aluminium, indium and gallium.

3. The solar concentrator according to claim 1 , wherein the nanocrystals have a large Stokes shift of more than 0.2 eV.

4. The solar concentrator according to claim 1 , wherein the body comprises at least one of the following polymers: polyacrylates, polymethyl methacrylates, polyolefins, polyvinyls, epoxy resins, polycarbonates, polyacetates, polyamides, polyurethanes, polyketones, polyesters, polycyanoacrylates, silicones, polyglycols, polyimides, fluorinated polymers, polycellulose, cellulose derivatives polyoxazines, and silica-based glasses.

5. The solar collector according to claim 4 , wherein the cellulose derivatives are selected from the group consisting of methyl cellulose and hydroxymethyl cellulose.

6. The solar concentrator according to claim 1 , wherein the solar concentrator has a sheet-like configuration in which the nanocrystals are dispersed in the body.

7. The solar concentrator according to claim 1 , wherein the solar concentrator has a film-like configuration.

8. A solar concentrator comprising a body made of polymer material or silica-based glass containing colloidal nanocrystals, wherein the nanocrystals are nanocrystals of at least ternary semiconductor chalcogenides, quaternary semiconductor chalcogenides, or alloys thereof, the nanocrystal size being smaller than the exciton Bohr radius,

wherein the ternary semiconductor chalcogenides comprises transition metals of group 11, in the IUPAC nomenclature, metals of group 13 in the IUPAC nomenclature and chalcogens of group 16 in the IUPAC nomenclature,

wherein the quaternary semiconductor chalcogenides comprises transition metals of group 11 in the IUPAC nomenclature, zinc, metals of group 13 in the IUPAC nomenclature, and at least one chalcogen of group 16 in the IUPAC nomenclature,

wherein the nanocrystals are free of cadmium, lead and mercury such that the solar concentrator is compatible with environmental requirements, and the nanocrystals are re-absorption free,

wherein the body comprises four edges,

wherein the nanocrystals form a homogenous structure in which optical absorption is due to band-to-band transitions of the semiconductor chalcogenides, such that emitted light is not reabsorbed by the nanocrystals and instead propagated to the four edges of the body,

wherein the nanocrystals comprise quaternary semiconductor chalcogenides, and wherein the nanocrystals have a composition according to the following formulation:

M I M III M II 2-x B VI x , wherein

M I is a transition metal of group 11 in the IUPAC nomenclature,

M III is a transition metal of group 13 in the IUPAC nomenclature,

M II is zinc,

A VI is a chalcogen of group 16 in the IUPAC nomenclature,

B VI is a chalcogen of group 16 in the IUPAC nomenclature,

x is a number of atom of the element B VI , and

2-x is a number of atom of the element A vI ,

wherein x is 0<X<2.

9. The solar concentrator according to claim 8 , wherein the nanocrystals have a large Stokes shift of more than 0.2 eV.

10. The solar concentrator according to claim 8 , wherein the body comprises at least one of the following polymers: polyacrylates, polymethyl methacrylates, polyolefins, polyvinyls, epoxy resins, polycarbonates, polyacetates, polyamides, polyurethanes, polyketones, polyesters, polycyanoacrylates, silicones, polyglycols, polyimides, fluorinated polymers, polycellulose, cellulose derivatives polyoxazines, and silica-based glasses.

11. The solar collector according to claim 10 , wherein the cellulose derivatives are selected from the group consisting of methyl cellulose and hydroxymethyl cellulose.

12. The solar concentrator according to claim 8 , wherein the solar concentrator has a sheet-like configuration in which the nanocrystals are dispersed in the body.

13. The solar concentrator according to claim 8 , wherein the solar concentrator has a film-like configuration.

14. A window for a building or for a moving structure, comprising at least one luminescent solar concentrator according to claim 1 .

15. A window for a building or for a moving structure, comprising at least one luminescent solar concentrator according to claim 8 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2017
From: BROVELLI, SERGIO; MEINARDI, FRANCESCO; CARULLI, FRANCESCO
To: UNIVERSITA' DEGLI STUDI DI MILANO - BICOCCA
Reel/Frame 042874/0704 →
Priority Claims (1)
IT MI2015A00041 · Jan 19, 2015 · national
Continuity (1)
Related Publication 20180019355A1 · Jan 18, 2018