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Rhodamine-immobilised electrospun chitosan nanofibrous material as a fluorescence turn-on Hg2+ sensor

机译:罗丹明固定化的静电纺丝壳聚糖纳米纤维材料作为荧光Hg2 +传感器

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摘要

A turn-on fluorescence sensing system for mercuric (Hg2+) ions relying on a modified rhodamine B–chitosan fluorophore moiety was developed. This novel sensing approach relies on the simultaneous electrospinning of chitosan and rhodamine B hydrazide with phenylisothiocyanate functionality in hexafluoroisopropanol solution at 3.4 kV cm−1. The electrospun mats exhibited not only considerably enhanced fluorescence intensity in the presence of mercury ions, a result attributed to the ring opening of the spirolactam unit of the rhodamine-based fluorophore, but also a remarkably high sensitivity and selectivity toward Hg2+. In effect, the strategy has the potential to open new avenues in the design and development of other high-performance nanofibrous sensing materials for detecting target metal species of environmental interest.
机译:开发了一种基于修饰的若丹明B-壳聚糖荧光基团的汞(Hg2 +)离子开启荧光传感系统。这种新颖的传感方法依赖于在3.4 andkV cm-1的六氟异丙醇溶液中同时进行壳聚糖和若丹明B酰肼与苯基异硫氰酸酯官能团的静电纺丝。电纺垫不仅在存在汞离子的情况下显示出显着增强的荧光强度,其结果归因于若丹明基荧光团的螺内酰胺单元的开环,而且对Hg2 +的灵敏度和选择性也非常高。实际上,该策略有可能在设计和开发其他高性能纳米纤维传感材料方面开辟新途径,以检测环境目标金属。

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