论文标题
单个液态色谱程序,以脉冲激光在水中消融产生的浓缩,分离和收集尺寸选择的Polyynes
A single liquid chromatography procedure to concentrate, separate and collect size-selected polyynes produced by pulsed laser ablation in water
论文作者
论文摘要
Polyynes是线性碳链,其特征在于交替的单键和三键,并由氢或其他末端取代基终止。它们可以通过液体(Plal)中的脉冲激光消融作为可伸缩,具有成本效益和快速的物理技术合成。与有机溶剂相比,水可以用作PLAL的溶剂,以避免毒性问题并降低成本。但是,在这种情况下,Polyynes达到的生产产量极低,并防止在新功能材料中进一步表征和实施。在这项工作中,我们通过在水中脉冲激光消融合成Polyynes,并优化了过程参数,以提高Polyynes的产量。然后,我们完全基于反相高性能液相色谱法(RP-HPLC)的过程,该过程有效地根据Polyynes的长度有效地浓度,分离和收集。由于Polyynes样品是一种水溶液,因此我们可以将其直接注入RP-HPLC柱中,而无需在有机溶剂中样品的情况下稀释步骤。由于我们的单一RP-HPLC程序,可以高度提高浓度并分别表征不同尺寸选择的Polyynes,以进一步用于功能材料。
Polyynes are linear carbon chains characterized by alternated single and triple bonds and terminated by hydrogen or other terminal substituents. They can be synthesized by pulsed laser ablation in liquid (PLAL) as a scalable, cost-effective, and fast physical technique. Water can be employed as a solvent for PLAL to avoid toxicity problems and to reduce costs compared to organic solvents. However, in this case, the production yield of polyynes reached is extremely low and prevents further characterization and implementation in new functional materials. In this work, we synthesized polyynes by pulsed laser ablation in water and we optimized the process parameters to improve the yield of polyynes by PLAL. Then, we developed a procedure entirely based on reversed-phase high-performance liquid chromatography (RP-HPLC) which effectively enables the concentration, separation and collection of polyynes according to their length. Since the polyynes sample is an aqueous solution, we could inject it directly into the RP-HPLC column without the dilution step required in the case of a sample in an organic solvent. Thanks to our single RP-HPLC procedure, it is possible to highly increase the concentration and separately characterize different size-selected polyynes for further use in functional materials.