Rhodamine-Immobilised Electrospun Chitosan Nanofibrous Material as a Fluorescence Turn-On Hg2+ Sensor
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Date
Authors
Mete, Derya
Emrullahoğlu, Mustafa
Demir, Mustafa Muammer
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Open Access Color
BRONZE
Green Open Access
Yes
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Publicly Funded
No
Abstract
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.
Description
Keywords
Chitosan, Fluorescence imaging, Mercury sensing, Nanofibre, Rhodamine, Nanofibre, Chitosan, Mercury sensing, Rhodamine, Fluorescence imaging
Fields of Science
01 natural sciences, 0104 chemical sciences
Citation
Horzum, N., Mete, D., Karakuş, E., Üçüncü, M., Emrullahoğlu, M, and Demir, M. M. (2016). Rhodamine-immobilised electrospun chitosan nanofibrous material as a fluorescence turn-on Hg2+ sensor. ChemistrySelect, 1(5), 896-900. doi:10.1002/slct.201600027
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OpenCitations Citation Count
17
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Volume
1
Issue
5
Start Page
896
End Page
900
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Scopus : 23
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