College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, Qingdao, 266109, Shandong Province, China.
CAS Key Laboratory of Chemistry of Northwestern Plant Resources and Key Laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, China.
Mikrochim Acta. 2022 Apr 4;189(5):175. doi: 10.1007/s00604-022-05291-9.
Facing the trends of green chemistry, this work tries to find a novel material for per aqueous liquid chromatography (PALC) aiming to reduce the consumption of hazardous reagents. As a kind of green nanomaterials, the chromatographic performance of carbon quantum dots (CQDs) in PALC was rarely studied. Here, hydrophilic CQDs were prepared by a simple hydrothermal method using citric acid and ethylenediamine as carbon sources. The synthesized CQDs with functional groups of amino, carboxyl, and hydroxyl were decorated on silica gels forming a novel Si-CQDs stationary phase. This Si-CQDs column possesses the typical retention feature of PALC. Compounds with different polarities including hydrophobic pesticides, polar sulfonamides, β-adrenoceptor blockers and agonists, as well as hydrophilic nucleosides and bases obtained satisfactory separation on this Si-CQDs column under PALC mode, even better resolution than in hydrophilic interaction liquid chromatography (HILIC) mode. A mixture of four sulfonamides can be separated within 6 min using a mobile phase containing only 5% acetonitrile, and the resolution achieves 2.39, 2.13, and 1.83 with an average column efficiency of 1400. For certain compounds, this Si-CQDs column showed better separation performance than commercial SiO column, NH column, and C18 column. The retention mechanism includes hydrophobic and electrostatic interactions due to the multifunctional groups of CQDs. This Si-CQDs column achieved the rapid detection of residual sulfonamides in milk with simplified sample pretreatment process and the detection of atenolol in commercial atenolol tablets. The developed Si-CQDs column has great prospects in low-cost and environmentally friendly separation and analysis.
面对绿色化学的发展趋势,本工作试图寻找一种新型的水相液相色谱(PALC)固定相材料,旨在减少危险试剂的消耗。作为一种绿色纳米材料,碳量子点(CQDs)在 PALC 中的色谱性能很少被研究。在此,通过简单的水热法以柠檬酸和乙二胺为碳源合成了具有氨基、羧基和羟基等功能基团的亲水性 CQDs,并将其修饰在硅胶上形成新型 Si-CQDs 固定相。该 Si-CQDs 柱具有 PALC 的典型保留特征。在 PALC 模式下,包括疏水性农药、极性磺胺类药物、β-肾上腺素受体阻滞剂和激动剂以及亲水性核苷和碱基在内的不同极性化合物都能在该 Si-CQDs 柱上得到满意的分离,甚至比亲水相互作用液相色谱(HILIC)模式下的分辨率更好。在仅含有 5%乙腈的流动相中,四种磺胺类药物的混合物可以在 6 min 内得到分离,其分辨率分别为 2.39、2.13 和 1.83,平均柱效为 1400。对于某些化合物,该 Si-CQDs 柱的分离性能优于商业 SiO 柱、NH 柱和 C18 柱。保留机制包括由于 CQDs 的多功能基团引起的疏水和静电相互作用。该 Si-CQDs 柱实现了简化样品预处理过程的牛奶中残留磺胺类药物的快速检测以及市售阿替洛尔片中阿替洛尔的检测。开发的 Si-CQDs 柱在低成本和环保分离分析方面具有广阔的前景。