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控制高质量胶体纳米晶体的质量、产率和稳定性时的副反应。

Side reactions in controlling the quality, yield, and stability of high quality colloidal nanocrystals.

作者信息

Chen Yongfen, Kim Myeongseob, Lian Guoda, Johnson Mathew B, Peng Xiaogang

机构信息

Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, Arkansas 72701, USA.

出版信息

J Am Chem Soc. 2005 Sep 28;127(38):13331-7. doi: 10.1021/ja053151g.

Abstract

Effects of side reactions during the formation of high quality colloidal nanocrystals were studied using ZnO as a model system. In this case, an irreversible side reaction, formation of esters, was identified to accompany formation of ZnO nanocrystals through the chemical reaction between zinc stearate and an excess amount of alcohols in hydrocarbon solvents at elevated temperatures. This irreversible side reaction made the resulting nanocrystals stable and with nearly unity yield regardless of their size, shape, and size/shape distribution. Ostwald ripening and intraparticle ripening were stopped due to the extremely low solubility/stability of the possible monomers because all free ligands in the solution were consumed by the side reaction. However, focusing on size distribution and 1D growth that are needed for the growth of high quality nanocrystals could still occur for high yield reactions. Upon the addition of a small amount of stearic acid or phosphonic acid, immediate partial dissolution of ZnO nanocrystals took place. Although the excess alcohol could not react with the resulting zinc phosphonic acid salt, it could force the newly formed zinc stearate gradually but completely back onto the existing nanocrystals. The results in this report indicate that side reactions are extremely important for the formation of high quality nanocrystals by affecting their quality, yield, and stability under growth conditions. Due to their lack of information in the literature and obvious practical advantages, studies of side reactions accompanying formation of nanocrystals are important for both fundamental science related to crystallization and industrial production of high quality nanocrystals.

摘要

以ZnO为模型体系,研究了高质量胶体纳米晶体形成过程中副反应的影响。在这种情况下,通过硬脂酸锌与烃类溶剂中过量醇在高温下的化学反应,发现伴随ZnO纳米晶体的形成会发生一种不可逆的副反应——酯的形成。这种不可逆的副反应使得所得纳米晶体稳定,且产率几乎达到100%,而与它们的尺寸、形状和尺寸/形状分布无关。由于可能的单体的极低溶解度/稳定性,奥斯特瓦尔德熟化和颗粒内熟化停止,因为溶液中的所有游离配体都被副反应消耗掉了。然而,对于高产率反应,高质量纳米晶体生长所需的尺寸分布和一维生长仍可能发生。加入少量硬脂酸或膦酸后,ZnO纳米晶体立即发生部分溶解。虽然过量的醇不能与生成的膦酸锌盐反应,但它可以迫使新形成的硬脂酸锌逐渐但完全回到现有的纳米晶体上。本报告中的结果表明,副反应通过影响纳米晶体在生长条件下的质量、产率和稳定性,对高质量纳米晶体的形成极为重要。由于文献中缺乏相关信息且具有明显的实际优势,纳米晶体形成过程中伴随的副反应研究对于结晶相关的基础科学和高质量纳米晶体的工业生产都很重要。

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