Fluorescent Probe for Al3+ Based on Naphthalene Derivative

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

Chen Man-juan, Wang Yang, Sun Fu-sheng, Yu Chun-wei, Zhang Jun, "Fluorescent Probe for Al3+ Based on Naphthalene Derivative," SSRG International Journal of Applied Chemistry, vol. 9,  no. 1, pp. 29-32, 2022. Crossref, https://doi.org/10.14445/23939133/IJAC-V9I1P105

Abstract:

A new probe for Al3+ based on the Al3+ induced reversible coordination with the proposed probe P1 was described. It displayed a highly selective and sensitive “turn-on” fluorescent response toward Al3+.

Keywords:

Al3+, Fluorescent probe, Turn on.

References:

[1] Z.C. Liu, Z.Y. Yang, Y.X. Li, T.R. Li, An Effective Multi-Wavelength Emissive Aluminum Ion Fluorescence Chemosensor Based on 3-[1′-(2′-Hydroxy-Α-Methyl Benzylidene-Imino)]-2-(P-N, N-Dimethylaminophenyl)-1, 2-Dihydro Quinazoline-4-(3H)-One, Inorganica Chimica Acta. 39 (2013) 77-80.
[2] J. Lee, H. Kim, S. Kim, J. Y. Noh, Fluorescent Dye-Containing Phenol-Pyridyl for Selective Detection of Aluminum Ions, Dyes and Pigments. 96 (2013) 590-594.
[3] J.C. Qin, L. Fan, T.R. Li, Z.Y. Yang, Recognition of Al3+ and Zn2+ Using a Single Schiff-Base in Aqueous Media, Synthetic Metals. 199 (2015) 179-186.
[4] S.W. King, J. Savory, M.R. Willis. The Clinical Biochemistry of Aluminum, Critical Reviews in Clinical Laboratory Sciences. 14 (1981) 1-20.
[5] I.S. Parkinson, M.K. Ward, D.N. Kerr, Dialysis Encephalopathy, Bone Disease, and Anemia: The Aluminum Intoxication Syndrome during Regular Hemodialysis, Journal of Clinical and Experimental Psychopathology. 34 (1981) 1285-1294.
[6] N. Gupta, S.S. Gaurav, A. Kumar, Molecular Basis of Aluminum Toxicity in Plants: A Review [J], American Journal of Plant Sciences. 4 (2013) 21-37.
[7] C.W. Yu, J. Zhang, J.H Li, P. Liu, P.H. Wei, L.X. Chen, Fluorescent Probe for Copper(Ii) Ion Based on a Rhodamine Spirolactame Derivative and its Application to Fluorescent Imaging in Living Cells, Microchim, Acta. 174 (2011) 247–255.
[8] Y.L. Fu, Y.Y. Tu, C.B. Fan, C.H. Zheng, A Highly Sensitive Fluorescent Sensor for Al3+ and Zn2+ Based on a Diarylethene Salicylhydrazide Schiff Base Derivative And Its Bioimaging in Live Cells, New Journal of Chemistry. 40 (2016) 8579.
[9] S.Z. Pu, C.C. Zhang, C.B. Fan, G. Liu, Multi-Controllable Properties of an Antipyrine-Based Diarylethene and its High Selectivity for Recognition of Al3+, Dyes and Pigments. 129 (2016) 24-33.
[10] Y.L. Fu, C.B. Fan, G. Liu, S.Q. Cui, A Highly Selective and Sensitive Ratiometric Fluorescent Chemosensor for Zn2+ Based on Diarylethene with a Benzyl-Linked 8-Aminoquinoline-2-Aminomethylpyridine Unit, Dyes and Pigments. 126 (2016) 121-130.
[11] 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, Analyst. 10 (2016) 1039.
[12] 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.
[13] 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.
[14] 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.
[15] N. Merge, 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.
[16] Y.X. Ji, C.W. Yu, S.B. Wen, J. Zhang, Characterization of an Al3+-Selective Fluorescent Probe Based on a Benzoyl Hydrazine Derivative and its Application in Cell Imaging, Turkish Journal of Chemistry. 40 (2016) 625-630.
[17] 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.
[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] 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.
[20] W.T. Zhang, C.W. Yu, M. Yang, S.B. Wen, Characterization of a Hg2+-Selective Fluorescent Probe Based on Rhodamine B and its Imaging in Living Cells, Molecules. 26 (2021) 3385.
[21] D.P. Roek, J.E. Chateauneuf, J.F. Brennecke, A Fluorescence Lifetime and Integral Equation Study of the Quenching of Naphthalene Fluorescence by Bromoethane in Super - and Subcritical Ethane, Industrial & Engineering Chemistry Research. 39 (2000) 3090-3096.
[22] A. Caballero, R. Martinez, V. Lloveras, I. Ratera, Highly Selective Chromogenic and Redox or Fluorescent Sensors of Hg2+ in Aqueous Environment Based on 1, 4-Disubstituted Azines Journal of the American Chemical Society. 127 (2005) 15666-15667.
[23] J.K. Choi, S.H. Kim, J.Yoon, K.H. Lee, A PCT-Based, Pyrene-Armed Calix[4] Crown Fluoroionophore, Journal of Physical Organic Chemistry. 71 (2006) 8011-8015.
[24] Y. Zheng, X. Cao, J. Orbulescu, V. Konka, Peptidyl Fluorescent Chemosensors for the Detection of Divalent Copper, Analytical Chemistry. 75 (2003) 1706-1712.
[25] S.M. Park, M.H. Kim, J.I. Choe, S.K. Chang, Cyclams were Bearing Diametrically Disubstituted Pyrenes as Cu2+- and Hg2+-Selective Fluoroionophores, Journal of Physical Organic Chemistry. 72 (2007) 3550-3553.