College of Petrochemical Technology, Lanzhou University of Technology, 730050, Lanzhou, People's Republic of China.
Gansu Guoxin Runda Analysis and Testing Center, 730010, Lanzhou, People's Republic of China.
Mikrochim Acta. 2023 May 20;190(6):230. doi: 10.1007/s00604-023-05807-x.
Chiral materials have drawn the widespread attention for their its chiral recognition ability. The design and synthesis of chiral material are of importance owing to the unpredictability in controlling chirality during the synthesis process. To circumvent problems, a chiral MOF (D-His-ZIF-8) was synthesized by ligand exchange of 2-methylimidazole (Hmim) on ZIF-8 by D-histidine (D-His), which can be treated as chiral host to distinguish amino acid enantiomers. The obtained D-His-ZIF-8 can provide chiral nanochannels for amino acid guests. Meanwhile, polynary transition-metal ion (Co and Fe) coordinating with polydopamine (PDA) wrapped on the surface of D-His-ZIF-8 can increase the active sites. The electrochemical chiral recognition behavior showed that D-His-ZIF-8@CoFe-PDA exhibited good recognition of the tryptophan enantiomer (L/D-Trp) (working potential of -0.2 V vs. Hg/HgCl). The LOD and LOQ of L-Trp were 0.066 mM and 0.22 mM, respectively, while the LOD and LOQ of D-Trp were 0.15 mM and 0.50 mM, respectively. Finally, the usefulness of D-His-ZIF-8@CoFe-PDA/GCE was evaluated with a recovery of 94.4-103%. The analysis of real samples shows that D-His-ZIF-8@CoFe-PDA/GCE is a feasible sensing platform for the detection of L-Trp and D-Trp.
手性材料因其手性识别能力而引起了广泛的关注。由于在合成过程中控制手性的不可预测性,手性材料的设计和合成非常重要。为了解决这些问题,通过 D-组氨酸(D-His)对 ZIF-8 上 2-甲基咪唑(Hmim)的配体交换,合成了手性 MOF(D-His-ZIF-8),它可以作为手性主体来区分氨基酸对映体。所得到的 D-His-ZIF-8 可以为氨基酸客体提供手性纳米通道。同时,多元过渡金属离子(Co 和 Fe)与包裹在 D-His-ZIF-8 表面的聚多巴胺(PDA)配位,可以增加活性位点。电化学手性识别行为表明,D-His-ZIF-8@CoFe-PDA 对色氨酸对映体(L/D-Trp)(相对于 Hg/HgCl 的工作电位为-0.2 V)具有良好的识别能力。L-Trp 的 LOD 和 LOQ 分别为 0.066 mM 和 0.22 mM,而 D-Trp 的 LOD 和 LOQ 分别为 0.15 mM 和 0.50 mM。最后,通过 94.4-103%的回收率评估了 D-His-ZIF-8@CoFe-PDA/GCE 的有用性。对实际样品的分析表明,D-His-ZIF-8@CoFe-PDA/GCE 是一种用于检测 L-Trp 和 D-Trp 的可行传感平台。