Title of article :
Synthesis, characterization and cytotoxicity of polyethylene glycol‑encapsulated CdTe quantum dots
Author/Authors :
Ali, Magdy Alexandria University - Egypt , Zayed, Dina Alexandria University - Egypt , Ramadan, W Alexandria University - Egypt , Kamel, Ola A Alexandria University - Egypt , Shehab, Mona Alexandria University - Egypt , Ebrahim, Shaker Alexandria University - Egypt
Abstract :
Semiconductor quantum dots (QDs) ofer tremendous scope to be used in the feld of energy, imaging, sensors and optoelectronic devices. However, several issues regarding their hydrophilicity, stability and cytotoxicity remain unresolved.
One of the methods to render CdTe QDs water-soluble is to functionalize the surface with carboxylate groups by the use of
heterobifunctional ligands such as 3-mercaptopropionic acid (MPA). Following this motif, we report the synthesis of CdTe
QDs using the non-aqueous organometallic route, ligand exchange with MPA was performed to replace the initial surface
passivation ligands trioctylphosphine oxide (TOPO) and hexadecylamine, and fnally, the prepared MPA-CdTe QDs were
encapsulated into the biocompatible polyethylene glycol. Our results show that pegylation of CdTe QDs provided minimal
cytotoxicity against baby hamster kidney (BHK 21) cells even at high levels. The IC50 values of pegylated CdTe QDs were
higher than the non-pegylated ones with a % viability ranges from 89:90% at a concentration range of 0.01:0.03 nM. Currently, available ligand exchange procedures lead to signifcant loss of quantum yields. In our study, the photoluminescence
(PL) emission of the MPA capped CdTe QDs decreased gradually as the pH increased from 4 to 10 while after pegylation
the prepared QDs exhibited signifcantly enhanced PL efciency and storage stability.
Keywords :
Quantum dots , CdTe , Toxicity , Encapsulated quantum dots , PEG , Ligand exchange
Journal title :
Astroparticle Physics