Core shell quantum dot and electronic device including the same
A quantum dot including zinc, tellurium, selenium, and sulfur, wherein the quantum dot comprises a core and a shell disposed on the core, and wherein the quantum dot is a cadmium-free red light-emitting quantum dot and has an emission peak wavelength of greater than or equal to about 600 nanometers (nm), and efficiency of greater than or equal to about 50%.
1. A quantum dot comprising:
zinc,
tellurium,
selenium, and
sulfur,
wherein the quantum dot comprises a core and a shell disposed on the core, and
wherein the quantum dot is a cadmium-free red light-emitting quantum dot and has an emission peak wavelength of greater than or equal to about 600 nanometers, and efficiency of greater than or equal to about 50%.
2. The quantum dot of claim 1 , wherein the core of the quantum dot comprises zinc and tellurium.
3. The quantum dot of claim 1 , wherein the shell of the quantum dot comprises zinc and selenium.
4. The quantum dot of claim 3 , wherein the shell of the quantum dot further comprises sulfur.
5. The quantum dot of claim 1 , wherein the shell of the quantum dot has a composition that varies in a radial direction.
6. The quantum dot of claim 1 , wherein the shell of the quantum dot comprises a first layer disposed directly on the core, and a second layer disposed on the first layer, wherein the first layer and the second layer comprise semiconductor nanocrystals having different compositions.
7. The quantum dot of claim 6 , wherein the first layer comprises zinc, selenium, and optionally sulfur, and the second layer comprises zinc and sulfur.
8. The quantum dot of claim 7 , wherein the second layer is an outermost layer of the quantum dot, and the second layer does not comprise selenium.
9. The quantum dot of claim 1 , wherein a mole ratio of zinc to tellurium of the quantum dot is in a range of about 1:0.01 to about 1:0.1.
10. The quantum dot of claim 1 , wherein a mole ratio of zinc and selenium of the quantum dot is in a range of about 1:0.2 to about 1:0.7.
11. The quantum dot of claim 1 , wherein a mole ratio of zinc to sulfur in the quantum dot is in a range of about 1:0.1 to about 1:0.6.
12. The quantum dot of claim 1 , wherein an average particle diameter of the quantum dot is greater than or equal to about 6 nanometers.
13. The quantum dot of claim 1 , wherein a thickness of the shell of the quantum dot is greater than or equal to about 2 nanometers.
14. The quantum dot of claim 1 , wherein a full width at half maximum of the emission peak wavelength of the quantum dot is less than or equal to about 60 nanometers.
15. A quantum dot-polymer composite, comprising:
a polymer matrix; and
a plurality of the quantum dots of claim 1 dispersed in the polymer matrix.
16. The quantum dot-polymer composite of claim 15 , wherein the polymer matrix comprises a thiol-ene resin, a (meth)acrylate polymer, a urethane polymer, an epoxy polymer, a vinyl polymer, a silicone polymer, or a combination thereof.
17. A display device, comprising:
a light source; and
a luminescent element,
wherein the luminescent element comprises the quantum dot-polymer composite of claim 15 , and
the light source is configured to provide the luminescent element with incident light.
18. An electroluminescent device, comprising
a first electrode and a second electrode facing each other; and
a quantum dot light emitting layer between the first electrode and the second electrode and comprising a plurality of quantum dots,
wherein the plurality of quantum dots comprise the quantum dot of claim 1 .
19. The electroluminescent device of claim 18 , wherein the electroluminescent device comprises a charge auxiliary layer between the first electrode and the quantum dot light emitting layer, between the second electrode and the quantum dot light emitting layer, or between the first electrode and the quantum dot light emitting layer and between the second electrode and the quantum dot light emitting layer.
20. The electroluminescent device of claim 19 , wherein the charge auxiliary layer comprises a charge transporting layer, a charge injecting layer, or a combination thereof.