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  • Selective Determination of Cr(VI) by Glutaraldehyde Cross-Linked Chitosan Polymer Fluorophores

    Author(s)
    Song, Jieyao
    Zhou, Hongjian
    Gao, Rui
    Zhang, Yong
    Zhang, Haimin
    Zhang, Yunxia
    Wang, Guozhong
    Wong, Po Keung
    Zhao, Huijun
    Griffith University Author(s)
    Zhao, Huijun
    Year published
    2018
    Metadata
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    Abstract
    Selective determination of aquatic chromium is critically important because of the dramatic differences in health and environment impacts by trivalent and hexavalent forms of chromium; however, it is challenging. In this work, for the first time, a nonconjugated polymer fluorophore (GCPF) was synthesized by cross-linking chitosan with glutaraldehyde via Schiff base reactions and systematically investigated for selective determination of Cr(VI). The results revealed that the synthesized GCPF exhibited excellent photostability and water solubility. More importantly, GCPF possessed dramatically enhanced fluorescence intensity ...
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    Selective determination of aquatic chromium is critically important because of the dramatic differences in health and environment impacts by trivalent and hexavalent forms of chromium; however, it is challenging. In this work, for the first time, a nonconjugated polymer fluorophore (GCPF) was synthesized by cross-linking chitosan with glutaraldehyde via Schiff base reactions and systematically investigated for selective determination of Cr(VI). The results revealed that the synthesized GCPF exhibited excellent photostability and water solubility. More importantly, GCPF possessed dramatically enhanced fluorescence intensity originated from the n−π* transitions of the Schiff base subfluorophore groups (e.g., C═N) that can be selectively and sensitively quenched by Cr(VI) through oxidative damages to C═N group. An effective EDTA masking agent approach was employed to minimize ionic interferences. In the presence of high concentration of interference ions including Cr(III), the quenching GCPF fluorescence is capable of selectively determining Cr(VI) within a concentration range up to 50 μM and a detection limit of 0.22 μM. The analytical performance of GCPF was also confirmed by analyzing real surface water and industrial samples.
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    Journal Title
    ACS Sensors
    Volume
    3
    Issue
    4
    DOI
    https://doi.org/10.1021/acssensors.8b00038
    Subject
    Analytical chemistry
    Biomedical engineering
    Nanotechnology
    Nanotechnology not elsewhere classified
    Publication URI
    http://hdl.handle.net/10072/378676
    Collection
    • Journal articles

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