Abstract

The formation of nearly monodisperse CdTe nanocrystalsdots (either zinc blende or wurtzite crystal structure), rods, and tetrapodsin a noncoordinating solvent was studied. Several strong ligand effects were observed, and the ligand effects on the monomers were found to play a more important role than the ligand effects on the nanocrystals. Experimental results suggest that, instead of monomer concentrations, monomer activities is a more relevant term for understanding the formation of nanocrystals because strong ligands always exist in the reaction solutions. The bonding strength and the steric effects of ligands dramatically affect the reactivity of monomers and are considered as contributors to the activity coefficients of monomers. The overall optical properties of the as-prepared CdTe nanocrystals are better than those reported in the literature and comparable to the standard CdSe nanocrystal system. The configuration of the hydrocarbon chains of the ligands on the surface of each nanocrystal also plays a critical role in determining the stability of CdTe nanocrystals.

Keywords

NanocrystalMonomerLigand (biochemistry)Wurtzite crystal structureMaterials scienceDispersityCrystallographyZincChemistryNanotechnologyPolymerPolymer chemistry

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Year
2003
Type
article
Volume
15
Issue
22
Pages
4300-4308
Citations
769
Access
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William W. Yu, Y. Andrew Wang, Xiaogang Peng (2003). Formation and Stability of Size-, Shape-, and Structure-Controlled CdTe Nanocrystals:  Ligand Effects on Monomers and Nanocrystals. Chemistry of Materials , 15 (22) , 4300-4308. https://doi.org/10.1021/cm034729t

Identifiers

DOI
10.1021/cm034729t