A fluorescent ratiometric sensor based on covalent immobilization of chalcone derivative and porphyrin Zinc for detecting water content in organic solvents
•A fluorescent ratiometric sensor for water content determination in organic solvents was presented in this paper.•The fluorescence ratio sensor proposed in the paper minimized the influence of measuring external conditions and obtains a more stable signal.•The sensor showed satisfactory selectivity...
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Published in | Sensors and actuators. B, Chemical Vol. 243; pp. 1046 - 1056 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Lausanne
Elsevier B.V
01.05.2017
Elsevier Science Ltd |
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Abstract | •A fluorescent ratiometric sensor for water content determination in organic solvents was presented in this paper.•The fluorescence ratio sensor proposed in the paper minimized the influence of measuring external conditions and obtains a more stable signal.•The sensor showed satisfactory selectivity, reproducibility, stability, and fast response time.
This paper describes a fluorescent ratiometric sensor for water content determination in organic solvents. Two different compounds, 4′-N, N-dimethylamino-4-methylacryloylamino chalcone (DMC) and 5, 10, 15, 20-tetra-(4-methylacryloylaminophenyl)porphyrin Zinc (TMAPPZn), were synthesized as indicators for fluorescence ratiometric water sensing. DMC is a fluorescence indicator with charge donor parts and acceptor parts and sensitive to solvent polarity and water content. The fluorescence intensity of TMAPPZn is insensitive to the water content lower than 10% (v/v) water content and employed as the reference indicator. The use of TMAPPZn as a reference indicator resulted in a more stable signal due to minimizing the effects of fluctuations of light intensity, fluorophore bleaching, background signal, and so forth. DMC and TMAPPZn were photo-copolymerized on the silanized glass surface to prevent leakage of the fluorescence indicators. Three organic solutions (ethanol, acetone, and tetrahydrofuran) were used to verify the performances of the proposed sensor, and the sensor exhibited a good linearity in the range 0–10% (v/v) water content with detection limits of 0.0097%, 0.011%, and 0.017% for ethanol, acetone, and tetrahydrofuran, respectively. The ratiometric sensor was characteristic of satisfactory reproducibility, reversibility, short response time. The sensing membrane was found to have a lifetime of two month. We carried out preliminary spiking experiments on the actual samples, and the spiked recoveries were of 99.2–102.0%. |
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AbstractList | This paper describes a fluorescent ratiometric sensor for water content determination in organic solvents. Two different compounds, 4′-N, N-dimethylamino-4-methylacryloylamino chalcone (DMC) and 5, 10, 15, 20-tetra-(4-methylacryloylaminophenyl)porphyrin Zinc (TMAPPZn), were synthesized as indicators for fluorescence ratiometric water sensing. DMC is a fluorescence indicator with charge donor parts and acceptor parts and sensitive to solvent polarity and water content. The fluorescence intensity of TMAPPZn is insensitive to the water content lower than 10% (v/v) water content and employed as the reference indicator. The use of TMAPPZn as a reference indicator resulted in a more stable signal due to minimizing the effects of fluctuations of light intensity, fluorophore bleaching, background signal, and so forth. DMC and TMAPPZn were photo-copolymerized on the silanized glass surface to prevent leakage of the fluorescence indicators. Three organic solutions (ethanol, acetone, and tetrahydrofuran) were used to verify the performances of the proposed sensor, and the sensor exhibited a good linearity in the range 0–10% (v/v) water content with detection limits of 0.0097%, 0.011%, and 0.017% for ethanol, acetone, and tetrahydrofuran, respectively. The ratiometric sensor was characteristic of satisfactory reproducibility, reversibility, short response time. The sensing membrane was found to have a lifetime of two month. We carried out preliminary spiking experiments on the actual samples, and the spiked recoveries were of 99.2–102.0%. •A fluorescent ratiometric sensor for water content determination in organic solvents was presented in this paper.•The fluorescence ratio sensor proposed in the paper minimized the influence of measuring external conditions and obtains a more stable signal.•The sensor showed satisfactory selectivity, reproducibility, stability, and fast response time. This paper describes a fluorescent ratiometric sensor for water content determination in organic solvents. Two different compounds, 4′-N, N-dimethylamino-4-methylacryloylamino chalcone (DMC) and 5, 10, 15, 20-tetra-(4-methylacryloylaminophenyl)porphyrin Zinc (TMAPPZn), were synthesized as indicators for fluorescence ratiometric water sensing. DMC is a fluorescence indicator with charge donor parts and acceptor parts and sensitive to solvent polarity and water content. The fluorescence intensity of TMAPPZn is insensitive to the water content lower than 10% (v/v) water content and employed as the reference indicator. The use of TMAPPZn as a reference indicator resulted in a more stable signal due to minimizing the effects of fluctuations of light intensity, fluorophore bleaching, background signal, and so forth. DMC and TMAPPZn were photo-copolymerized on the silanized glass surface to prevent leakage of the fluorescence indicators. Three organic solutions (ethanol, acetone, and tetrahydrofuran) were used to verify the performances of the proposed sensor, and the sensor exhibited a good linearity in the range 0–10% (v/v) water content with detection limits of 0.0097%, 0.011%, and 0.017% for ethanol, acetone, and tetrahydrofuran, respectively. The ratiometric sensor was characteristic of satisfactory reproducibility, reversibility, short response time. The sensing membrane was found to have a lifetime of two month. We carried out preliminary spiking experiments on the actual samples, and the spiked recoveries were of 99.2–102.0%. |
Author | Hu, Liu-Yin Wu, Sheng-Quan Huang, Da-Wei Wen, Xiao-Ju Zeng, Guang-Ming Zhang, Lei Niu, Cheng-Gang Wang, Xiao-Yu |
Author_xml | – sequence: 1 givenname: Xiao-Yu surname: Wang fullname: Wang, Xiao-Yu email: wangxy0373@126.com, wangxiaoyu@hnu.edu.cn organization: College of Environmental Science and Engineering, Key Laboratory of Environmental Biology and Pollution Control, Ministry of Education, Hunan University, Changsha 410082, China – sequence: 2 givenname: Cheng-Gang surname: Niu fullname: Niu, Cheng-Gang email: cgniu@hnu.edu.cn, cgniu@hotmail.com organization: College of Environmental Science and Engineering, Key Laboratory of Environmental Biology and Pollution Control, Ministry of Education, Hunan University, Changsha 410082, China – sequence: 3 givenname: Liu-Yin surname: Hu fullname: Hu, Liu-Yin organization: College of Environmental Science and Engineering, Key Laboratory of Environmental Biology and Pollution Control, Ministry of Education, Hunan University, Changsha 410082, China – sequence: 4 givenname: Da-Wei surname: Huang fullname: Huang, Da-Wei organization: South China Institute of Environmental Sciences, Ministry of Environmental Protection of PRC, Guangzhou 510655, China – sequence: 5 givenname: Sheng-Quan surname: Wu fullname: Wu, Sheng-Quan organization: College of Environmental Science and Engineering, Key Laboratory of Environmental Biology and Pollution Control, Ministry of Education, Hunan University, Changsha 410082, China – sequence: 6 givenname: Lei surname: Zhang fullname: Zhang, Lei organization: College of Environmental Science and Engineering, Key Laboratory of Environmental Biology and Pollution Control, Ministry of Education, Hunan University, Changsha 410082, China – sequence: 7 givenname: Xiao-Ju surname: Wen fullname: Wen, Xiao-Ju organization: College of Environmental Science and Engineering, Key Laboratory of Environmental Biology and Pollution Control, Ministry of Education, Hunan University, Changsha 410082, China – sequence: 8 givenname: Guang-Ming surname: Zeng fullname: Zeng, Guang-Ming organization: College of Environmental Science and Engineering, Key Laboratory of Environmental Biology and Pollution Control, Ministry of Education, Hunan University, Changsha 410082, China |
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Keywords | Chalcone derivative Fluorescence ratiometric sensor Covalent immobilization Porphyrin Zinc Water content |
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Snippet | •A fluorescent ratiometric sensor for water content determination in organic solvents was presented in this paper.•The fluorescence ratio sensor proposed in... This paper describes a fluorescent ratiometric sensor for water content determination in organic solvents. Two different compounds, 4′-N,... |
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SubjectTerms | Acetone Bleaching Chalcone derivative Chemical synthesis Copolymerization Copolymers Covalent immobilization Ethanol Fluorescence ratiometric sensor Fluorescent indicators Indicators Linearity Luminous intensity Moisture content Polarity Polymerization Porphyrin Zinc Reproducibility Response time Sensors Solvents Tetrahydrofuran Variations Water content Zinc |
Title | A fluorescent ratiometric sensor based on covalent immobilization of chalcone derivative and porphyrin Zinc for detecting water content in organic solvents |
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