Asokan Subashini, Krueger Karl M, Alkhawaldeh Ammar, Carreon Alessandra R, Mu Zuze, Colvin Vicki L, Mantzaris Nikos V, Wong Michael S
Department of Chemistry, Rice University, USA.
Nanotechnology. 2005 Oct;16(10):2000-11. doi: 10.1088/0957-4484/16/10/004. Epub 2005 Aug 3.
Fluorescent semiconductor nanoparticles, or quantum dots, have potential uses as an optical material, in which the optoelectronic properties can be tuned precisely by particle size. Advances in chemical synthesis have led to improvements in size and shape control, cost, and safety. A limiting step in large-scale production is identified to be the raw materials cost, in which a common synthesis solvent, octadecene, accounts for most of the materials cost for a batch of CdSe quantum dots. Thus, less expensive solvents are needed. In this paper, we identify heat transfer fluids, a class of organic liquids commonly used in chemical process industries to transport heat between unit operations, as alternative solvents for quantum dot synthesis. We specifically show that two heat transfer fluids can be used successfully in the synthesis of CdSe quantum dots with uniform particle sizes. We show that the synthesis chemistry for CdSe/CdS core/shell quantum dots and CdSe quantum rods can also be performed in heat transfer fluids. With the aid of a population balance model, we interpret the effect of different HT fluids on QD growth kinetics in terms of solvent effects, i.e., solvent viscosity, CdSe bulk solubility in the solvent, and surface free energy.
荧光半导体纳米颗粒,即量子点,具有作为光学材料的潜在用途,其中其光电特性可通过颗粒大小进行精确调节。化学合成方面的进展已带来尺寸和形状控制、成本及安全性方面的改进。大规模生产中的一个限制步骤被确定为原材料成本,其中一种常见的合成溶剂十八烯占一批CdSe量子点材料成本的大部分。因此,需要更便宜的溶剂。在本文中,我们确定传热流体,一类在化学加工行业中常用于在单元操作之间传递热量的有机液体,作为量子点合成的替代溶剂。我们具体表明两种传热流体可成功用于合成具有均匀粒径的CdSe量子点。我们表明CdSe/CdS核壳量子点和CdSe量子棒的合成化学也可在传热流体中进行。借助群体平衡模型,我们从溶剂效应,即溶剂粘度、CdSe在溶剂中的本体溶解度和表面自由能的角度,解释了不同传热流体对量子点生长动力学的影响。