Department of Chemistry, University of Kalyani, Kalyani-741235, India.
Anal Methods. 2020 Dec 21;12(47):5699-5708. doi: 10.1039/d0ay01540g. Epub 2020 Nov 19.
To develop fluorophore-labelled pyridinium-based macromolecular architectures for fluorometric and colorimetric detection of anions, two polymers P1 and P2 are synthesized. Linear polymer P1 and cross-linked polymer P2, prepared from N-methacryloyl-3-aminopyridine monomers via free radical polymerization followed by quaternization of the pyridine ring nitrogen with anthracene as a fluorescent marker, have been successfully employed in anion sensing. P1 exhibits excellent sensing of HPPi in aqueous DMSO. In addition to the enhancement of fluorescence emission of the anthracene moiety, P1 exclusively shows excimer/exciplex emission in the presence of HPPi over other anions and exhibits selectivity to HPPi with a detection limit of about 1.63 ppm. Cross-linked P2 exhibits naked-eye detection of PPi/HPPi over other anions studied via indicator displacement assay (IDA).
为了开发用于荧光和比色检测阴离子的荧光标记吡啶鎓基高分子结构,我们合成了两种聚合物 P1 和 P2。线性聚合物 P1 和交联聚合物 P2 是由 N-丙烯酰基-3-氨基吡啶单体通过自由基聚合制备的,然后用蒽作为荧光标记物对吡啶环氮进行季铵化。这两种聚合物已成功应用于阴离子传感。P1 在水-DMSO 中对 HPPi 具有优异的传感性能。除了增强蒽部分的荧光发射外,P1 在存在 HPPi 时还表现出独特的激基缔合物/激基复合物发射,而对其他阴离子则表现出选择性,检测限约为 1.63ppm。交联聚合物 P2 通过指示剂置换分析 (IDA) 对研究的其他阴离子表现出对 PPi/HPPi 的肉眼检测。