Fluorescent Probe for Fe3+ Based on a Schiff-base Derivative

International Journal of Applied Chemistry
© 2022 by SSRG - IJAC Journal
Volume 9 Issue 1
Year of Publication : 2022
Authors : Wang Yang, Sun Fu-sheng, Chen Man-juan, Yu Chun-wei
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How to Cite?

Wang Yang, Sun Fu-sheng, Chen Man-juan, Yu Chun-wei, "Fluorescent Probe for Fe3+ Based on a Schiff-base Derivative," SSRG International Journal of Applied Chemistry, vol. 9,  no. 1, pp. 25-28, 2022. Crossref, https://doi.org/10.14445/23939133/IJAC-V9I1P104

Abstract:

A new probe for Fe3+ based on dopamine as a receptor was described. It displayed a highly selective and sensitive fluorescent response toward Fe3+ over other metal ions.

Keywords:

Fe3+, Fluorescent probe, Dopamine.

References:

1] M.N. Elizabeth, J.L. Stephen, Tools and Tactics for the Optical Detection of Mercuric Ion, Chemical Reviews. 108 (2008) 3443-3480.
[2] Y. Jeong, J. Yoon, Recent Progress on Fluorescent Chemosensors for Metal Ions, Inorganica Chimica Acta. 381 (2012) 2-14.
[3] Z.C. Xu, J. Yoon, D.R. Spring, Fluorescent Chemosensors for Zn2+, Chemical Society Reviews. 39 (2010) 1996-2006.
[4] B.D. Autreaux, N.P.Tucker, R. Dixon, S. Spiro, A Non-Haem Iron Center in the Transcription Factor Norr Senses Nitric Oxide, Nature. (437) (2005) 769-772
[5] H. Weizman, O. Ardon, B. Mester, J. Libman, O. Dwir, Y. Hadar, Y. Chen, A. Shanzer, Fluorescently-Labeled Ferrichrome Analogs as Probes for Receptor-Mediated, Microbial Iron Uptake, Journal of the American Chemical Society. 118 (1996) 12368-12375.
[6] C. W. Yu, L. Jian, Y. X. Ji, J. Zhang, Al(III)-Responsive Off–On Chemosensor Based on Rhodamine Derivative and its Application in Cell Imaging, RSC, Advance. 8 (2018) 31106-31112.
[7] X.Y. Liu, A. Chen, Y.X. Wu, C.Y. Kan, J.H. Xu, Fabrication of Fluorescent Polymer Latexes Based on Rhodamine B Derivatives and their Reusable Films for Fe3+ Detection, Dyes and Pigments. 182 (2020) 108633.
[8] J.W. Luo, B. Zhao, S.L. Zhang, Y.F. Jia, J. Liu, Fluorescent Probe-Based on Morpholine Derivatives for Fe3+/Cu2+, Chinese Journal of Inorganic Chemistry. 36 (2020) 1845-1852.
[9] Y.B. Zhang, S. Xia, M.X. Fang, W. Mazi, Y.B. Zeng, T. Johnston, A. Pap, R.L. Luck, H.Y. Liu, New Near-Infrared Rhodamine Dyes with Large Stokes Shifts for Sensitive Sensing of Intracellular pH Changes and Fluctuations, Chemical Communications. 54 (2018) 7625-7628.
[10] L.C. Li, R.F. Guan, M.M. Guo, P. Ning, R. Shao, X.M. Meng, A FRET-Based Two-Photon Fluorescent Probe for Ratiometric Detection of Pd2+ in Living Cells and in Vivo, Sensors and Actuators B: Chemical. 254 (2018) 949-955.
[11] Y.X Ji, C.W. Yu, S.B. Wen, J. Zhang, Characterization of an Al3+ Selective Fluorescent Probe Based on Benzoyl Hydrazine Derivative and its Application in Cell Imaging, Turkish Journal of Chemistry. 40 (2016) 625-630.
[12] C.W. Yu, L. Jian, Y.X. Ji, J. Zhang, Al(III)-Responsive Off-On Chemosensor Based on Rhodamine Derivative and its Application in Cell Imaging, RSC Advances. 8 (2018) 31106-31112.
[13] C.W. Yu, Y.X. Ji, L. Jian, J. Zhang, A pH Tuning Single Fluorescent Probe Based on Naphthalene for Dual-Analytes (Mg2+ and Al3+) and its Application in Cell Imaging, RSC Advances. 10 (2020) 21399-21405.
[14] C.W. Yu, Y.X. Ji, S.B. Wen, J. Zhang, Synthesis and Characterization of an Mg2+-Selective Probe Based on Benzoyl Hydrazine Derivative and its Application in Cell Imaging, Molecules. 26 (2021) 2457.
[15] W.T. Zhang, C.W. Yu, M. Yang, S.B. Wen, J. Zhang, Characterization of a Hg2+-Selective Fluorescent Probe Based on Rhodamine B and its Imaging in Living Cells, Molecules. 26 (2021) 3385.
[16] S.S. Long, Q.L. Qiao, L. Miao, Z.C. Xu, A Self-Assembly/Disassembly Two-Photon Ratiometric Fluorogenic Probe for Bacteria Imaging, Chinese Chemical Letters. 30 (2019) 573-576.
[17] S. Wang, Z.Y. Zhang, Z.J. Huang, X.L. Lei, Y. Wang, L.G. Li, L.T. Yang, H. Liu, F.G. Sun, L.J. Ma, It is a Pyrene-Based pH Fluorescence Probe with Continuous Multiple Responses Under Acidic Conditions and its Application for Environmental Water Systems and Cells, Journal of Photochemistry and Photobiology, A: Chemistry. 48 (2021) 113438.
[18] C.W. Yu, Y.X. Ji, L. Jian, J. Zhang, A pH Tuning Single Fluorescent Probe Based on Naphthalene for Dual-Analytes (Mg2+ And Al3+) and its Application in Cell Imaging, RSC Advances. 10 (2020) 21399-21405.
[19] ML. Guerinot, Microbial Iron Transport, Annual Review of Microbiology. 48 (1994) 743-772.
[20] M. Wang, Y.L. Yuan, H.M. Wang, Z.H Qin, Fluorescent and Colorimetric Probe Containing Oxime-Ether for Pd2+ in Pure Water and Living Cells, The Analyst. 141 (2016) 832-835.
[21] J. Yan, L. Fan, J.C. Qin, C.R. Li, A Novel and Resumable Schiff-Base Fluorescent Chemosensor for Zn(II), Tetrahedron Letters. 57 (2016) 2910-2914.
[22] L. Huang, J. Cheng, K.F. Xie, P.X. Xi, Cu2+-Selective Fluorescent Chemosensor Based on Coumarin and its Application in Bioimaging, Dalton Transactions. 40 (2011) 10815-10817.
[23] C.J. Li, K.Q. Xiang, Y.C. Liu, Y.C. Zheng, A Colorimetric and Fluorescent Chemodosimeter Responded to Cu2+ with High Selectivity and Sensitivity, Research on Chemical Intermediates. 41 (2015) 5915-5927.
[24] N. Mergu, V. K. Gupta, A Novel Colorimetric Detection Probe for Copper(II) Ions Based on a Schiff Base, Sensors and Actuators B: Chemical. 210 (2014) 408-417.
[25] C.W. Yu, T. Wang, K. Xu, J. Zhao, M.H. Li, S.X. Weng, J. Zhang, Characterization of a Highly Cu2+-Selective Fluorescent Probe Derived from Rhodamine B, Dyes and Pigments. 96 (2013) 38-44.