Jackson State University, Department of Chemistry and Biochemistry, Jackson, MS 39217, USA.
Nanoscale. 2012 Feb 21;4(4):1312-20. doi: 10.1039/c2nr11439a. Epub 2012 Jan 25.
An aqueous route of synthesis is described for rapid synthesis of lead selenide quantum dots (PbSe QDs) at room temperature in an attempt to produce water-soluble and stable nanocrystals. Several thiol-ligands, including thioglycolic acid (TGA), thioglycerol (TGC), 3-mercaptopropionic acid (MPA), 2-mercaptoethylamine hydrochloride (MEA), 6-mercaptohexanoic acid (MHA), and l-cysteine (l-cys), were used for capping/stabilization of PbSe QDs. The effects of the ligands on the stability of PbSe QDs were evaluated for a period of two months at room temperature under normal light conditions and at 4 °C in the dark. The TGA- and MEA-capped QDs exhibited the highest stability prior to purification, almost two months when kept in the dark at 4 °C. However, the stability of TGA-capped QDs was reduced substantially after purification to about 5 days under the same conditions, while MEA-capped QDs did not show any significant instability. The stabilization energies of Pb-thiolate complexes determined by theoretical DFT simulations supported the experimental results. The PbSe QDs capped with TGA, MPA and MEA were successfully purified and re-dispersed in water, while those stabilized with TGC, MHA and l-cys aggregated during purification attempts. The purified PbSe QDs possess very susceptible surface resulting in poor stability for about 30-45 min after re-dispersion in water. In the presence of an excess of free ligand, the stability increased up to 5 days for TGA-capped QDs at pH 7.19, 9-12 days for MPA-capped QDs at pH 7.3-7.5 and 45-47 days for MEA-capped QDs at pH 7.35. X-Ray diffraction (XRD) results showed that the QDs possess a cubic rock salt structure with the most intense peaks located at 2θ = 25.3° (200) and 2θ = 29.2° (100). TEM images showed that the size of the QDs ranges between 5 and 10 nm. ICP-MS results revealed that Pb : Se ratios were 1.26, 1.28, 3.85, 1.18, and 1.31 for the QDs capped with TGA, MPA, MEA, l-cys, and TGC, respectively. The proposed method is inexpensive, simple and utilizes environmentally friendly chemicals and solvents.
本文描述了一种在室温下快速合成碲化铅量子点(PbSe QDs)的水相合成路线,旨在制备水溶性和稳定的纳米晶体。几种巯基配体,包括巯基乙酸(TGA)、巯基甘油(TGC)、3-巯基丙酸(MPA)、2-巯基乙胺盐酸盐(MEA)、6-巯基己酸(MHA)和 l-半胱氨酸(l-cys),用于 PbSe QDs 的包覆/稳定。在室温下正常光照条件下和 4°C 暗处条件下,评估了配体对 PbSe QDs 稳定性的影响,时间长达两个月。在未纯化之前,TGA 和 MEA 包覆的 QDs 表现出最高的稳定性,在 4°C 暗处保存近两个月。然而,TGA 包覆的 QDs 在纯化后稳定性大大降低,在相同条件下约为 5 天,而 MEA 包覆的 QDs 没有表现出任何明显的不稳定性。通过理论 DFT 模拟确定的 Pb-硫醇配合物的稳定能支持实验结果。用 TGA、MPA 和 MEA 包覆的 PbSe QDs 成功地在水中纯化和再分散,而用 TGC、MHA 和 l-cys 稳定的 QDs 在纯化尝试中聚集。纯化后的 PbSe QDs 具有非常敏感的表面,导致在重新分散在水中后的约 30-45 分钟内稳定性较差。在游离配体过量的情况下,TGA 包覆的 QDs 在 pH 7.19 时稳定性增加至 5 天,MPA 包覆的 QDs 在 pH 7.3-7.5 时稳定性增加至 9-12 天,MEA 包覆的 QDs 在 pH 7.35 时稳定性增加至 45-47 天。X 射线衍射(XRD)结果表明,量子点具有立方岩盐结构,最强峰位于 2θ=25.3°(200)和 2θ=29.2°(100)。TEM 图像显示量子点的尺寸在 5 到 10nm 之间。ICP-MS 结果表明,用 TGA、MPA、MEA、l-cys 和 TGC 包覆的量子点的 Pb:Se 比分别为 1.26、1.28、3.85、1.18 和 1.31。该方法成本低廉、简单,利用环保的化学物质和溶剂。