基于硫磺素T的可视化检测汞离子的荧光探针
收稿日期: 2013-09-20
修回日期: 2013-10-31
网络出版日期: 2013-11-11
基金资助
湖北省教育厅青年人才(No.Q20134402)、湖北理工学院校级创新人才(No.12xjz21C)和矿区环境污染控制与修复湖北省重点实验室开放基金(No.2012103)资助项目.
Thioflavin T-Based Fluorescent Probe for Visual Detection of Hg2+
Received date: 2013-09-20
Revised date: 2013-10-31
Online published: 2013-11-11
Supported by
Project supported by the Youth Program of Educational Commission of Hubei of China (No. Q20134402), the Hubei Polytechnic University Innovation Program (No. 12xjz21C) and the Open Foundation of Hubei Key Laboratory of Mine Environmental Pollution Control & Remediation (No. 2012103).
张勇 , 王强 , 李伟 , 张静 , 夏明辉 , 陈世明 , 陈雪梅 . 基于硫磺素T的可视化检测汞离子的荧光探针[J]. 有机化学, 2014 , 34(2) : 403 -408 . DOI: 10.6023/cjoc201309001
A thioflavin T-based fluorescent probe was synthesized by using o-aminobenzenethiol and copper reagent as raw materials. The results showed that it exhibited relatively high sensitivity and selectivity to Hg2+, and the common metal ions hardly interfered in the determination. The probe could be used for the visual detection of Hg2+ and applied to image intracelluar Hg2+ in living Hela cells.
[1] Nolan, E. M.; Lippard, S. J. Chem. Rev. 2008, 108, 3443.
[2] Ynag, Q.-H.; Chen, C.-B.; Liu, S.-K.; Gao, J.-G.; Zhou, J. J. Anal. Sci. 2013, 29, 391 (in Chinese).
(杨青桦, 陈长宝, 刘士坤, 高吉刚, 周杰, 分析科学学报, 2013, 29, 391.)
[3] Sun, W.; Hu, D.-Y.; W. Z.-B.; Song, B.-A.; Yang, S. Chin. J. Org. Chem. 2011, 31, 997 (in Chinese).
(孙伟, 胡德禹, 吴志兵, 宋宝安, 杨松, 有机化学, 2011, 31, 997.)
[4] Lin, Q.; Chen, P.; Liu, J.; Fu, Y.-P.; Zhang, Y.-M.; Wei, T.-B. Prog. Chem. 2013, 25, 1177 (in Chinese).
(林奇, 陈佩, 刘娟, 符永鹏, 张有明, 魏太保, 化学进展, 2013, 25, 1177.)
[5] Vendrell, M.; Zhai, D. T.; Er, J. C.; Chang, Y. T. Chem. Rev. 2012, 112, 4391.
[6] Du, M.-H.; Han, Z.-X.; Wu, X.-Y.; Liang, G.-X.; Zhao, T.; Zhang, H.-Q. Chin. J. Spectr. Lab. 2012, 29, 3170 (in Chinese).
(杜明辉, 韩志湘, 吴向阳, 梁国熙, 赵婷, 张浩琪, 光谱实验室, 2012, 29, 3170.)
[7] Wu, X.-L.; Lai, J.-P.; Zhao, Y.-B. Chem. J. Chin. Univ. 2012, 33, 695 (in Chinese).
(吴小丽, 赖金平, 赵一兵, 高等学校化学学报, 2012, 33, 695.)
[8] Mithun, S.; Basab, R.; Kyo, H. A. Org. Lett. 2011, 13, 3422.
[9] Masayasu, T.; Kazushi, A.; Shohei, L.; Yukio, Y. Inorg. Chem. 2012, 51, 13075.
[10] Jiang, J.; Liu, W.; Cheng, J.; Yang, L.; Jiang, H.; Bai, D.; Liu, W. Chem. Commun. 2012, 48, 8371.
[11] Xu, Z.-H.; Hou, X.-F.; Xu, W.-L.; Guo, R.; Xiang, T.-C. Inorg. Chem. Commun. 2013, 34, 42.
[12] Chen X. Q.; Pradhan T.; Wang, F.; Kim, J. S.; Yoon, J. Chem. Rev. 2012, 112, 1910.
[13] Yang, Z.; Hao, L. K.; Yin, B.; She, M. Y.; Obst, M.; Kappler, A.; Li, J. L. Org. Lett. 2013, 15, 4334.
[14] Mahato, P.; Saha, S.; Suresh, E.; Liddo, R. D.; Parnigotto, P. P.; Conconi, M. T.; Kesharwani, M. K.; Ganguly, B.; Das, A. Inorg. Chem. 2012, 51, 1769.
[15] Khatua, S.; Schmittel, M. Org. Lett. 2013, 15, 4422.
[16] Park, S.; Kim, W.; Swamy, K. M. K.; Lee, H. Y.; Jung, J. Y.; Kim, G.; Kim Y.; Kim, S. J.; Yoon, J. Dyes Pigm. 2013, 99, 323.
[17] Wang, H. F.; Wu, S. P. Tetrahedron 2013, 69, 1965.
[18] Lin, Q.; Huang, Y. W.; Fan, J.; Wang, R. Y.; Fu, N. Y. Talanta 2013, 114, 66.
[19] Shortreed, M.; Kopelman, R.; Kuhn, M.; Hoyland, B. Anal. Chem. 1996, 68, 1414.
[20] Yi, W.-G.; Cao, Z.; Yan, D.; Cao, T.-T.; Xue, L. Chin. J. Anal. Chem. 2012, 40, 1241 (in Chinese).
(易卫国, 曹忠, 鄢东, 曹婷婷, 薛琳, 分析化学, 2012, 40, 1241.)
[21] Chen, C.; Dong, H. J.; Chen, Y. Q.; Guo, L. Q.; Wang, Z. Y.; Sun, J. J.; Fu, N. Y. Org. Biomol. Chem. 2011, 9, 8195.
[22] Fang, X.-W.; Zhou, L.-Z.; Cheng, Z.; Yang, M.-P.; Yang, B.-Q. Chin. J. Org. Chem. 2013, 33, 523 (in Chinese).
(方线文, 周丽珍, 成 昭, 杨美盼, 杨秉勤, 有机化学, 2013, 33, 523.)
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