IP Library Granted Patent US 8,828,478
Granted Patent B2
US 8,828,478 · App. 13/890,754 · Granted Sep 9, 2014

Highly luminescent color-selective nanocrystalline materials

Inventors: Moungi G. Bawendi (Cambridge, MA); Klavs F. Jensen (Lexington, MA); Bashir O. Dabbousi (Dharan, SA); Javier Rodriguez-Viejo (Sant Cugat del Valles, ES); Frederic Victor Mikulec (Somerville, MA)
Assignee: Massachusetts Institute of Technology
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Quick Facts
Patent No.
US 8,828,478
App. No.
13/890,754
Granted
Sep 9, 2014
Kind
B2
Abstract

A nanocrystal capable of light emission includes a nanoparticle having photoluminescence having quantum yields of greater than 30%.

Claims (27)

1. A series of monodisperse samples of nanocrystals comprising:

a first monodisperse sample of nanocrystals, wherein each nanocrystal of the first monodisperse sample of nanocrystals includes a core including a first semiconductor material and a shell including a second semiconductor material;

wherein the first semiconductor material is different from the second semiconductor material;

wherein the first monodisperse sample of nanocrystals has a wavelength of peak photoluminescence, and a photoluminescence quantum yield of greater than about 30%;

a second monodisperse sample of nanocrystals, wherein each nanocrystal of the second monodisperse sample of nanocrystals includes a core including a third semiconductor material and a shell including a fourth semiconductor material;

wherein the third semiconductor material is different from the fourth semiconductor material;

wherein the second monodisperse sample of nanocrystals has a wavelength of peak photoluminescence and a photoluminescence quantum yield of greater than about 15%;

wherein the wavelength of peak photoluminescence of the first monodisperse sample of nanocrystals is different from the wavelength of peak photoluminescence of the second monodisperse sample of nanocrystals.

2. The series of claim 1 , wherein the second monodisperse sample of nanocrystals has a photoluminescence quantum yield of greater than about 30%.

3. The series of claim 1 , wherein the first semiconductor material and the third semiconductor material are the same.

4. The series of claim 1 , wherein the cores of the first monodisperse sample of nanocrystals and the cores of the second monodisperse sample of nanocrystals have different average diameters.

5. The series of claim 1 , wherein the second semiconductor material and the fourth semiconductor material are the same.

6. The series of claim 1 , wherein the wavelength of peak photoluminescence of the first sample of nanocrystals is in the range of about 470 nm to about 620 nm.

7. The series of claim 1 , wherein the wavelength of peak photoluminescence of the first sample of nanocrystals is different from the wavelength of peak photoluminescence of the second sample of nanocrystals by 50 nm or more.

8. The series of claim 1 , wherein the wavelength of peak photoluminescence of the first sample of nanocrystals and the wavelength of peak photoluminescence of the second sample of nanocrystals are each selected from a continuous progression from the blue through the green, the yellow, the orange, to the red.

9. A series of monodisperse samples of nanocrystals comprising:

a first monodisperse sample of nanocrystals, wherein each nanocrystal of the first monodisperse sample of nanocrystals includes a core including a first semiconductor material and a shell including a second semiconductor material;

wherein the first semiconductor material is different from the second semiconductor material;

wherein the first monodisperse sample of nanocrystals has a wavelength of peak photoluminescence, and a photoluminescence quantum yield of greater than about 30%;

a second monodisperse sample of nanocrystals, wherein each nanocrystal of the second monodisperse sample of nanocrystals includes a core including the first semiconductor material and a shell including the second semiconductor material;

wherein the second monodisperse sample of nanocrystals has a wavelength of peak photoluminescence and a photoluminescence quantum yield of greater than about 15%;

a third monodisperse sample of nanocrystals, wherein each nanocrystal of the third monodisperse sample of nanocrystals includes a core including the first semiconductor material and a shell including the second semiconductor material;

wherein the third monodisperse sample of nanocrystals has a wavelength of peak photoluminescence and a photoluminescence quantum yield of greater than about 15%;

wherein the cores of the first monodisperse sample of nanocrystals, the cores of the second monodisperse sample of nanocrystals, and the cores of the third monodisperse sample of nanocrystals each have different average diameters;

wherein the wavelength of peak photoluminescence of the first monodisperse sample of nanocrystals, the wavelength of peak photoluminescence of the second monodisperse sample of nanocrystals, and the wavelength of peak photoluminescence of the third monodisperse sample of nanocrystals are each different.

10. The series of claim 9 , wherein the wavelength of peak photoluminescence of the first monodisperse sample of nanocrystals, the wavelength of peak photoluminescence of the second monodisperse sample of nanocrystals, and the wavelength of peak photoluminescence of the third monodisperse sample of nanocrystals span from green to orange.

11. The series of claim 9 , wherein the wavelength of peak photoluminescence of the first monodisperse sample of nanocrystals, the wavelength of peak photoluminescence of the second monodisperse sample of nanocrystals, and the wavelength of peak photoluminescence of the third monodisperse sample of nanocrystals span from blue to red.

Assignments (2)
CONFIRMATORY LICENSE Recorded May 8, 2015
From: MASSACHUSETTS INSITUTE OF TECHNOLOGY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 035623/0568 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2013
From: BAWENDI, MOUNGI G.; MIKULEC, FREDERIC V.; KIM, SUNGJEE
To: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Reel/Frame 030393/0183 →
Continuity (10)
Division 13157473 · Jun 10, 2011
Continuation 12725438 · Mar 16, 2010
Continuation 12509869 · Jul 27, 2009
Continuation 11502493 · Aug 11, 2006
Division 10960947 · Oct 12, 2004
Continuation 10642578 · Aug 19, 2003
Continuation 09625861 · Jul 26, 2000
Continuation In Part 08969302 · Nov 13, 1997
Provisional Application 60145708 · Jul 26, 1999
Related Publication 20130240788A1 · Sep 19, 2013