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在非配位溶剂中添加二级配体合成的胶体CdSe纳米晶体:异常的生长动力学

Colloidal CdSe nanocrystals synthesized in noncoordinating solvents with the addition of a secondary ligand: exceptional growth kinetics.

作者信息

Dai Quanqin, Li Dongmei, Chen Haiyong, Kan Shihai, Li Hongdong, Gao Shiyong, Hou Yuanyuan, Liu Bingbing, Zou Guangtian

机构信息

National Laboratory of Superhard Materials, Jilin University, Changchun 130012, People's Republic of China.

出版信息

J Phys Chem B. 2006 Aug 24;110(33):16508-13. doi: 10.1021/jp063126c.

Abstract

The addition of a secondary ligand, trioctylphosphine oxide, in the synthesis of cadmium selenide nanocrystals performed in a system with oleic acid as the primary ligand and octadecene as the noncoordinating solvent gives rise to the improvement of nanocrystal size distribution. This phenomenon, which is more significant in the nucleation process than in the growth process, demonstrates that the existence of trioctylphosphine oxide allows for superior nucleation control and permits the facile and reproducible production of extremely small CdSe nanocrystals with narrow size distribution. A systematic study of the nanocrystal formation processes shows that the well-established colloidal nanocrystal growth mechanism, in which nucleation is followed by focusing of size distribution and ended with defocusing of size distribution, cannot be applied to our reactions. Instead, we observed an exceptional type of growth mechanism in which, after nucleation, clear defocusing instead of focusing follows; then slight focusing occurs.

摘要

在以油酸作为主要配体、十八烯作为非配位溶剂的体系中合成硒化镉纳米晶体时,添加第二配体三辛基氧化膦会使纳米晶体的尺寸分布得到改善。这种现象在成核过程中比在生长过程中更为显著,表明三辛基氧化膦的存在能够实现更好的成核控制,并能轻松且可重复地制备出尺寸分布窄的极小尺寸硒化镉纳米晶体。对纳米晶体形成过程的系统研究表明,已确立的胶体纳米晶体生长机制,即成核后尺寸分布聚焦然后尺寸分布散焦,并不适用于我们的反应。相反,我们观察到一种特殊的生长机制,即成核后紧接着是明显的散焦而非聚焦;然后出现轻微聚焦。

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