Key Laboratory of Superlight Materials and Surface Technology, Ministry of Education, Institute of Advanced Marine Materials, College of Materials Science and Chemical Engineering, Harbin Engineering University, Harbin, China.
Beijing Key Laboratory of Ionic Liquids Clean Process, State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, China.
Chirality. 2022 Jan;34(1):147-159. doi: 10.1002/chir.23388. Epub 2021 Nov 8.
Chiral resolution of binaphthylamine is often a toilful conundrum in the field of analytical chemistry and biomedicine. The work puts forward a selective, sensitive, and miniaturized analytical method based on molecularly imprinted polymers (MIPs) as adsorbent for miniaturized tip solid-phase extraction (MTSPE) in the separation of binaphthylamine enantiomer. This method combines the advantages of MIPs (high selectivity), MTSPE (low consumption), and high-performance liquid chromatography (HPLC, high sensitivity). A simple synthesis methodology of MIP (P2) was conducted through bulk polymerization with (S)-(-)-1,1'-binaphthyl-2,2'-diamine (S-DABN) as template together with methacrylic acid monomer, and ethylene glycol dimethacrylate as cross-linker in proper porogen, realizing a selective recognition and efficient enrichment for S-DABN. The method exhibited appreciable linearity (0.06-1.00 mg ml ), low quantification limit (0.056 mg ml ), good absolute recoveries (45.70%-69.29%), and high precision (relative standard deviations ≤ 3.54%), along with low consumption (0.50 ml sample solution and 25.0 mg adsorbent). Based on the density functional theory, computational simulation was used to make a preliminary prediction for rational design of MIPs and gave a reasonable elaboration involving the potential mechanism of templates interacting with functional monomers. The adsorption kinetics and thermodynamics were investigated to evaluate the recombination process of substrates. In addition, the selectivity of MIPs for S-DABN was obtained by MIP-MTSPE coupled with HPLC, which supports the feasibility of this convenient design process. The proposed method was employed for selective extraction of S-DABN and exhibited promising potential in the application of chiral analysis.
手性拆分联萘胺在分析化学和生物医学领域通常是一项艰巨的难题。本工作提出了一种基于分子印迹聚合物(MIP)作为吸附剂的选择性、灵敏性和微型化分析方法,用于联萘胺对映体的分离。该方法结合了 MIP(高选择性)、微型化固相萃取(MTSPE,低消耗)和高效液相色谱(HPLC,高灵敏度)的优点。通过本体聚合,以(S)-(-)-1,1'-联萘-2,2'-二胺(S-DABN)为模板,与甲基丙烯酸单体和乙二醇二甲基丙烯酸酯在适当的致孔剂中合成 MIP(P2),实现了 S-DABN 的选择性识别和有效富集。该方法表现出良好的线性(0.06-1.00mg/ml)、低定量限(0.056mg/ml)、良好的绝对回收率(45.70%-69.29%)和高精密度(相对标准偏差≤3.54%),同时消耗低(0.50ml 样品溶液和 25.0mg 吸附剂)。基于密度泛函理论,通过计算模拟对 MIPs 的合理设计进行了初步预测,并对模板与功能单体相互作用的潜在机制进行了合理阐述。研究了吸附动力学和热力学,以评估底物的重组过程。此外,通过 HPLC 结合 MIP-MTSPE 获得了 MIP 对联萘胺的选择性,验证了这种简便设计过程的可行性。该方法用于选择性萃取 S-DABN,在手性分析中的应用具有广阔的应用前景。