首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Production of Small, Stable PbS/CdS Quantum Dots via Room Temperature Cation Exchange Followed by a Low Temperature Annealing Processes
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Production of Small, Stable PbS/CdS Quantum Dots via Room Temperature Cation Exchange Followed by a Low Temperature Annealing Processes

机译:通过室温阳离子交换生产小,稳定的PBS / CDS量子点,然后进行低温退火工艺

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摘要

Here, we discuss a simple low temperature process for the synthesis of small and stable PbS/CdS QDs with emission below 1100 nm. For this, small PbS QDs with emission below 1100 nm synthesized from PbCl2 in oleylamine with 1-dodecanethiol, as reported by our group recently, were used. A thin CdS shell was grown on PbS at room temperature (RT) via cation exchange (CE), which is a self-limiting process providing about 100 nm blue shift in the emission maxima, hence is quite practical for reaction control and production of predictable particles. RTCE process provides 6-9 times stronger emission than original PbS with better optical stability. Annealing of the PbS/CdS QDs in solid state at mild temperatures (50-100 degrees C) improves crystallinity of the particles. Final ligand exchange on the annealed PbS/CdS with 1-dodecanethiol (DT) enhances the long-term stability of particles further. The optimum overall process is determined as RTCE followed by annealing at 50 degrees C for 1 h and finished with ligand exchange with DT. Influence of these processes on QD structure and optical properties were studied as well as stability in chloroform and petroleum products (diesel and gasoline) for possible optical tagging applications of such liquids. Overall, a simple, controllable, and scalable method is developed to produce highly stable, bright, size-tunable PbS/CdS QDs with emission detectable with low cost semiconductor detectors.
机译:在这里,我们讨论一个简单的低温过程,用于合成小且稳定的PBS / CDS QD,发射低于1100nm。为此,使用近期从oleylamine的PbCl2合成的小PBS QD,其中来自Ouleyl2的PbCl2,其中较近由我们的组的1-十二烷硫醇。通过阳离子交换(CE)在室温(RT)的PBS上生长薄CDS壳,其是自限制过程,在发射最大值中提供约100nm的蓝色偏移,因此对反应控制和可预测的产生是非常实用的粒子。 RTCE过程提供比具有更好光学稳定性的原始PBS更强的发射6-9倍。在温和温度(50-100℃)的固态中的PBS / Cds QDS退火改善了颗粒的结晶度。用1-十二烷硫醇(DT)的退火PBS / Cds上的最终配体交换增强了颗粒的长期稳定性。最佳整体过程确定为RTCE,然后在50℃下退火1小时,并用DT完成配体交换。研究了这些方法对QD结构和光学性质的影响以及氯仿和石油产品(柴油和汽油)的稳定性,用于这种液体的可能的光学标记应用。总的来说,开发了一种简单,可控的和可扩展的方法,以产生高度稳定,明亮的尺寸可调的PBS / CDS QD,具有低成本半导体检测器可检测的发射。

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