Li Long, Zhang Yihao, Du Pengcheng, Qian Yi, Zhang Peidong, Guo Qingjie
College of Environment and Safety Engineering, Qingdao University of Science and Technology, Qingdao 266042, P. R. China.
College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, P. R. China.
Anal Chem. 2020 Nov 3;92(21):14740-14746. doi: 10.1021/acs.analchem.0c03319. Epub 2020 Oct 16.
A handful of bis/tetra-phosphonate calix[4]pyrroles with recognition sites embedding in hydrophobic cavitands were evaluated for the first time as ionophores for polymeric membrane Ach-selective electrodes. Highly selective potentiometric Ach could be achieved over its analogues, especially for Ch, which differs only by an acetate tail from Ach. The superior performance of the proposed ISEs might be ascribed to a dual-site binding mode, in which the trimethylammonium head and acetate tail were accommodated by the phosphonate group-bridged aryl walls and the bowl-shaped aromatic cavity, through cation-π/charge-dipole interaction and the convergent four N-H···O hydrogen bonds, respectively. To gain more insight into the performance of the proposed ISEs, the cation-ionophore complex constants in the membrane phase were determined, and the binding affinity trend correlates well with the selectivity pattern. These results suggest that conformational preorganization of the ionophores and complementary weak interactions do change the selectivity of the ionophores. Studies on the influence of the sample solution pH demonstrated that the developed ISEs can be employed in a wide pH range of 4.0-9.6 with a fast response (<60 s), good reversibility, and long lifetime. Optimizing the membrane components, such as ionophores, lipophilic additives, and plasticizers, yielded ISEs, showing Nernstian responses to Ach with improved linear ranges and detection limits (a slope of -59.5 mV/dec in the linear range of 1 × 10-1 × 10 M with a detection limit of 3 × 10 M), which led to the success of the determination of Ach in spiked urine and milk samples.
首次评估了少数几种识别位点嵌入疏水空穴的双/四膦酸杯[4]吡咯作为聚合物膜乙酰胆碱选择性电极的离子载体。相对于其类似物,尤其是相对于仅在乙酸酯尾部与乙酰胆碱不同的胆碱,能够实现对乙酰胆碱的高选择性电位测定。所提出的离子选择性电极的优异性能可能归因于双位点结合模式,其中三甲基铵头部和乙酸酯尾部分别通过阳离子-π/电荷-偶极相互作用和收敛的四个N-H···O氢键,由膦酸根基团桥连的芳基壁和碗状芳香腔容纳。为了更深入了解所提出的离子选择性电极的性能,测定了膜相中阳离子-离子载体的络合常数,并且结合亲和力趋势与选择性模式良好相关。这些结果表明,离子载体的构象预组织和互补的弱相互作用确实改变了离子载体的选择性。对样品溶液pH影响的研究表明,所开发的离子选择性电极可以在4.0-9.6的宽pH范围内使用,具有快速响应(<60秒)、良好的可逆性和长寿命。优化膜组分,如离子载体、亲脂性添加剂和增塑剂,得到了对乙酰胆碱具有能斯特响应的离子选择性电极,其线性范围和检测限得到改善(在1×10-1×10 M的线性范围内斜率为-59.5 mV/dec,检测限为3×10 M),这使得在加标尿液和牛奶样品中成功测定乙酰胆碱成为可能。