纳米晶
化学
扩散
溶解度
配体(生物化学)
磷化氢
色散(光学)
粒径
化学工程
化学物理
粒度
热力学
物理化学
有机化学
材料科学
催化作用
生物化学
物理
受体
光学
工程类
冶金
作者
Kim De Nolf,Richard Čapek,Sofie Abé,Michael Sluydts,Young Jin Jang,José C. Martins,Stefaan Cottenier,Efrat Lifshitz,Zeger Hens
摘要
We investigate the relation between the chain length of ligands used and the size of the nanocrystals formed in the hot injection synthesis. With two different CdSe nanocrystal syntheses, we consistently find that longer chain carboxylic acids result in smaller nanocrystals with improved size dispersions. By combining a more in-depth experimental investigation with kinetic reaction simulations, we come to the conclusion that this size tuning is due to a change in the diffusion coefficient and the solubility of the solute. The relation between size tuning by the ligand chain length and the coordination of the solute by the ligands is further explored by expanding the study to amines and phosphine oxides. In line with the weak coordination of CdSe nanocrystals by amines, no influence of the chain length on the nanocrystals is found, whereas the size tuning brought about by phosphine oxides can be attributed to a solubility change. We conclude that the ligand chain length provides a practical handle to optimize the outcome of a hot injection synthesis in terms of size and size dispersion and can be used to probe the interaction between ligands and the actual solute.
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