Silver-Mediated Perylene–3, 4, 9, 10–Tetracarboxylate Tetrapotassium Salt Aggregation for Highly Sensitive Detection of Iodide in Water

Article Preview

Abstract:

A simple fluorescent iodide ion sensor was fabricated. Ag+ was found to specifically induce the aggregation of perylene–3, 4, 9, 10–tetracarboxylate tetrapotassium salt (PTK) in water, simultaneously, fluorescence of PTK was quenched. The resultant PTK–Ag+ aggregates showed a "turn–on" fluorescence response for halide ion, especially I-, and excellent selectivity toward possible interfering anions, contain sulfide.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

833-837

Citation:

Online since:

July 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Zhai, D., Xu, W., Zhang, L., Chang, Y. T: Chemical Society Reviews Vol. 43 (2014), pp.2402-2411.

Google Scholar

[2] Wang, B., Yu, C: Angewandte Chemie International Edition Vol. 49 (2010), pp.1485-1488.

Google Scholar

[3] Ruan, Y. B., Li, A. F., Zhao, J. S., Shen, J. S., Jiang, Y. B: Chemical Communications Vol. 46 (2010), pp.4938-4940.

Google Scholar

[4] Liu, Y., Lv, X., Zhao, Y., Liu, J., Sun, Y. Q., Wang, P., Guo, W: J. Mater. Chem Vol. 22 (2012), pp.1747-1750.

Google Scholar

[5] Jung, H. S., Han, J. H., Habata, Y., Kang, C., Kim, J. S: Chemical Communications Vol. 47 (2011), pp.5142-5144.

Google Scholar

[6] Han, B., Yuan, J., Wang, E: Analytical chemistry Vol. 81 (2009), pp.5569-5573.

Google Scholar

[7] Bao, Q., Goh, B. M., Yan, B., Yu, T., Shen, Z., Loh, K. P: Advanced Materials Vol. 22 (2010), pp.3661-3666.

Google Scholar

[8] Marty, R., Nigon, R., Leite, D., Frauenrath, H: Journal of the American Chemical Society Vol. 136 (2014), pp.3919-3927.

Google Scholar

[9] Schiphorst, J. T., Kendhale, A. M., Debije, M. G., Menelaou, C., Herz, L. M., Schenning, A. P: Chemistry of Materials Vol. 26 (2014), pp.3876-3878.

DOI: 10.1021/cm501508n

Google Scholar

[10] Che, Y., Yang, X., Zang, L: Chem. Commun Vol. 12 (2008), pp.1413-1415.

Google Scholar

[11] Qin, C., Wong, W. Y., Wang, L: Macromolecules Vol. 44 (2010), pp.483-489.

Google Scholar

[12] Naveenraj, S., Raj, M. R., Anandan, S: Dyes and Pigments Vol. 94 (2012), pp.330-337.

Google Scholar

[13] Lee Y H, Yu L, Wang H, et al.: Nano letters Vol. 13 (2013), pp.1852-1857.

Google Scholar

[14] Wang L, Cui Q, Chen X F, et al.: Australian Journal of Chemistry Vol. 66 (2013), pp.692-700.

Google Scholar

[15] Abdel-Latif, M. S., Al-Saraj, M. R: Analytical letters Vol. 40 (2007), pp.729-736.

Google Scholar

[16] Shen, Z., Li, H., Feng, L: Analyst Vol. 136 (2011), pp.5025-5029.

Google Scholar

[17] Wang, H., Xue, L., Jiang, H: Organic letters Vol. 13 (2011), pp.3844-3847.

Google Scholar