An “on-off-on” fluorescent sensor based on TSPP-gallic acid: Visual detection of S2− in actual samples

Author:

Liu Yuanyuan1234,Ma Tianfeng123,Li Jing5,Shi Lin123,Xu Xiaohua123,Wang Huan123

Affiliation:

1. Phytochemistry Key Laboratory of Tibetan Plateau of Qinghai Province, China

2. Modern Tibetan Medicine Creation Engineering Technology Research Center of Qinghai Province, China

3. College of Pharmacy, Qinghai Minzu University, China

4. Yinchuan City Center for Disease Control and Prevention, Ningxia, China

5. Yixing Innovation Fine Chemical Co., Ltd., Yixing, China

Abstract

A novel “on-off-on” switches fluorescence sensor based on TSPP-gallic acid (GA) for S[Formula: see text]-detecting was designed in this article. 5,10,15,20- (4-sulphonatophenyl) porphyrin (TSPP) was synthesized by a modified “one-pot” method. The synthesized TSPP was used as a fluorescence probe for the construction of a fluorescence sensing system. At room temperature, the maximum fluorescence emission wavelength could be obtained at 642 nm when the excitation wavelength was 515 nm when the fluorescence signal was in the “on” mode. The TSPP solution appeared pink in color at this moment. When GA was introduced into the TSPP solution, the fluorescence signal was turned off (fluorescence intensity was quenched) due to the protonation of TSPP, which was caused by the weak acidity of GA. The color of the TSPP solution changed from pink to green. Following that, an acid-base reaction between S[Formula: see text]and GA was initiated when S[Formula: see text]was introduced into the TSPP-GA system, leading to the liberation of TSPP and restoration of fluorescence intensity. The solution color reverted to red, indicating that the fluorescence sensing system had returned to the “on” mode. The TSPP-GA system had good selectivity and sensitivity to S[Formula: see text], the linear range was 4.52 × 10[Formula: see text] M [Formula: see text] 4.34 × 10[Formula: see text] M, and the detection limit (LOD) was 0.87 [Formula: see text] M. It could be used to detect sulfur ions in actual samples with satisfactory recoveries and RSD values.

Funder

the Natural Science Foundation of Qinghai Province, China

the Universitylevel Planning Project of Qinghai Nationality University of Qinghai Province in China

the Innovation team of Medicinal material resource protection and high-value utilization in Qinghai Province

Publisher

World Scientific Pub Co Pte Ltd

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