Water soluble nanocrystalline quantum dots capable of near infrared emissions
A novel quantum dot capable of near infrared emissions at wavelengths of 750-1100 is made by forming solid solutions of metal sulfide, metal selenide or metal sulfide selenide by incorporating a suitable amount of an additional metallic element or elements to provide an emission wavelength in the range of 750 nm to 1100 nm. The quantum dots may be enabled for bioconjugation and may be used in a method for tissue imaging and analyte detection.
1. A quantum dot having the formula D x M (1-x) Se y S (1-y) ;
where M is a metal selected from the group consisting of cadmium and zinc;
D is selected from the group consisting of: lead, iron, manganese and mixtures thereof;
S represents sulfide;
Se represents selenide;
wherein y is within the range of 0-1; and
wherein x is from 0.25 to 0.85 and is selected to provide a quantum dot having an emission having a wavelength of from about 750 nm to about 1100 nm.
2. The quantum dot of claim 1 , wherein x is from 0.4-0.8.
3. The quantum dot of claim 1 , wherein said quantum dot comprises a sulfide.
4. The quantum dot of claim 1 , wherein said quantum dot comprises a selenide.
5. The quantum dot of claim 1 , wherein said quantum dot comprises a sulfide selenide.
6. The quantum dot of claim 1 , wherein said metal M is zinc.
7. The quantum dot of claim 1 , wherein said metal M is cadmium.
8. The quantum dot of claim 1 , wherein D is lead.
9. The quantum dot of claim 1 , wherein a molar ratio of (D and M):(Se and/or S) is equal to or greater than 1.
10. The quantum dot of claim 9 , wherein y is equal to 0.
11. The quantum dot of claim 1 , further comprising a capping molecule, wherein a molar ratio of capping molecule:(D and/or M) is from about 1:3 to about 8:1.
12. The quantum dot of claim 11 , wherein y is equal to 0.
13. The quantum dot of claim 1 , wherein said quantum dot is synthesized according to the method of:
forming a solution comprising a metal salt and a water-soluble sulfide or selenide;
precipitating said quantum dot from said solution; and
subsequently adding cations to a quantum dot core precipitated from said solution.
14. The quantum dot of claim 13 , wherein said method for synthesizing said quantum dot further comprises the step of adding said metal salt to said solution over a time period of from about 10 to about 20 minutes.