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Bipyridine hydrogel for selective and visible detection and absorption of Cd2+

机译:关于水凝胶对选择性和可见的检测和吸收Cd2 +

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摘要

Herein, we report for the first time the use of bipyridine-based hydrogel for selective and visible detection and absorption of Cd2+. At low concentrations, hydrogelator 1 was applied for selective detection of Cd2+ in vitro and in living cells with high sensitivity. In the absence of metal ions, 1 is nonfluorescent at 470 nm. Upon addition of metal ions, 1 selectively coordinates to Cd2+, causing an 86-fold increase of fluorescence intensity at 470 nm via the chelation enhanced fluorescence (CHEF) effect, as revealed by first-principles simulations. At 1.5 wt% and pH 5.5, 1 self-assembles into nanofibers to form hydrogel Gel I. Since Cd2+ could actively participate in the hydrogelation and promote the self-assembly, we also successfully applied Gel I for visible detection and absorption of Cd2+. With these excellent properties, Gel I is expected to be explored as one type of versatile biomaterial for not only environmental monitoring but also for pollution treatment in the near future.
机译:在此,我们报告首次使用bipyridine-based选择性和水凝胶可见检测和吸收Cd2 +。浓度,hydrogelator 1申请Cd2 +体外和选择性检测活细胞具有高度的敏感性。没有金属离子,1是nonfluorescent 470nm。坐标Cd2 +,导致增加了86倍在470海里通过荧光强度螯合增强荧光效应(厨师),揭示了采用基于模拟。5.5 wt %和pH值,1这种纳米纤维形成水凝胶凝胶因为Cd2 +可以积极参与hydrogelation和促进我自组装,我们也成功应用凝胶可见的Cd2 +检测和吸收。我与这些优秀的性质,凝胶将探索作为一种通用的不仅环境监测的生物材料而且附近的污染治理的未来。

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