Materials and methods for biological imaging
Water soluble InAs(ZnCdS) semiconductor nanocrystals with bright and stable emission in the near infrared (NIR) wavelength range have been prepared. The NIR semiconductor nanocrystals can be functionalized to enable imaging of specific cellular proteins. In addition, the utility of the NIR region for in vivo biological imaging is clearly demonstrated by the superior ability of InAs(ZnCdS) semiconductor nanocrystals to image tumor vasculature.
1. A composition for biological imaging comprising a water soluble semiconductor nanocrystal having a hydrodynamic diameter of no greater than 10 nm and having a peak emission wavelength in the range of 700 nm to 1000 nm and having a quantum efficiency of greater than 10%, wherein the semiconductor nanocrystal includes a polymeric ligand, and wherein the polymeric ligand is poly(amino-PEG 11 ) 25 %-PIL ligand.
2. The composition of claim 1 , wherein the semiconductor nanocrystal has a core including a first semiconductor material, wherein the first semiconductor material is a III-V semiconductor.
3. The composition of claim 2 , wherein the core has a diameter of 1.4 nm or less.
4. The composition of claim 2 , wherein the semiconductor nanocrystal includes a shell on a surface of the core, the shell including a second semiconductor material, wherein the second semiconductor material is a II-VI semiconductor.
5. The composition of claim 4 , wherein the II-VI semiconductor includes a II-VI semiconductor alloy.
6. The composition of claim 5 , wherein the first semiconductor material is InAs and the II-VI semiconductor alloy is a ZnCdS alloy.
7. The composition of claim 1 , wherein the quantum efficiency of the semiconductor nanocrystal is greater than 20%, 40%, 60%, 70%, or 80%.