The Signal Amplification in Electrochemical Detection of Chloramphenicol Using Sulfonated Polyaniline‐chitosan Composite as Redox Capacitor
In this work, a novel redox capacitor was designed for signal amplification in electrochemical detection. It was fabricated by co‐electrodeposition of a conducting polymer, sulfonated polyaniline (SPAN) and chitosan on a glass carbon electrode, and its function was evaluated for being a localized so...
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Veröffentlicht in: | Electroanalysis (New York, N.Y.) N.Y.), 2018-09, Vol.30 (9), p.2085-2093 |
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creator | Mao, Yanjun Guo, Liping Ning, Xiaohui Li, Jian Zheng, Jianbin |
description | In this work, a novel redox capacitor was designed for signal amplification in electrochemical detection. It was fabricated by co‐electrodeposition of a conducting polymer, sulfonated polyaniline (SPAN) and chitosan on a glass carbon electrode, and its function was evaluated for being a localized source to transfer electron between FcCOOH (Fc) and Ru(NH3)6Cl3 in solution via redox cycling. Furthermore, the electrochemical detection of chloramphenicol, a broad‐spectrum antibiotic was performed using the redox capacitor in the presence of Fc. A significant amplification in cathodic current response of chloramphenicol was obtained through a continuous redox‐cycling reaction. The performance of the amplifying signal responded linearly to chloramphenicol in a concentration range of 0.05 to 50.0 μmol L−1 with a low detection limit of 0.01 μmol L−1. The proposed approach exhibited good reproducibility and stability, and could be used for detection of chloramphenicol in eye drops by standard addition method with the recoveries from 96.5 % to 103.0 %. |
doi_str_mv | 10.1002/elan.201800218 |
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It was fabricated by co‐electrodeposition of a conducting polymer, sulfonated polyaniline (SPAN) and chitosan on a glass carbon electrode, and its function was evaluated for being a localized source to transfer electron between FcCOOH (Fc) and Ru(NH3)6Cl3 in solution via redox cycling. Furthermore, the electrochemical detection of chloramphenicol, a broad‐spectrum antibiotic was performed using the redox capacitor in the presence of Fc. A significant amplification in cathodic current response of chloramphenicol was obtained through a continuous redox‐cycling reaction. The performance of the amplifying signal responded linearly to chloramphenicol in a concentration range of 0.05 to 50.0 μmol L−1 with a low detection limit of 0.01 μmol L−1. The proposed approach exhibited good reproducibility and stability, and could be used for detection of chloramphenicol in eye drops by standard addition method with the recoveries from 96.5 % to 103.0 %.</description><identifier>ISSN: 1040-0397</identifier><identifier>EISSN: 1521-4109</identifier><identifier>DOI: 10.1002/elan.201800218</identifier><language>eng</language><subject>Chloramphenicol ; Electrochemical detection ; Redox capacitor ; Signal amplification ; Sulfonated polyaniline</subject><ispartof>Electroanalysis (New York, N.Y.), 2018-09, Vol.30 (9), p.2085-2093</ispartof><rights>2018 Wiley‐VCH Verlag GmbH & Co. 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It was fabricated by co‐electrodeposition of a conducting polymer, sulfonated polyaniline (SPAN) and chitosan on a glass carbon electrode, and its function was evaluated for being a localized source to transfer electron between FcCOOH (Fc) and Ru(NH3)6Cl3 in solution via redox cycling. Furthermore, the electrochemical detection of chloramphenicol, a broad‐spectrum antibiotic was performed using the redox capacitor in the presence of Fc. A significant amplification in cathodic current response of chloramphenicol was obtained through a continuous redox‐cycling reaction. The performance of the amplifying signal responded linearly to chloramphenicol in a concentration range of 0.05 to 50.0 μmol L−1 with a low detection limit of 0.01 μmol L−1. The proposed approach exhibited good reproducibility and stability, and could be used for detection of chloramphenicol in eye drops by standard addition method with the recoveries from 96.5 % to 103.0 %.</description><subject>Chloramphenicol</subject><subject>Electrochemical detection</subject><subject>Redox capacitor</subject><subject>Signal amplification</subject><subject>Sulfonated polyaniline</subject><issn>1040-0397</issn><issn>1521-4109</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2018</creationdate><recordtype>article</recordtype><recordid>eNqFkE1OwzAQhSMEEqWwZe0LpIzTJLWXVSg_UgWItuto4kwaI8eO4iDojgsgcUZOQioQLFnNzHvzvcULgnMOEw4QXZBBO4mAi-Hg4iAY8STiYcxBHg47xBDCVM6OgxPvnwBAprEcBe_rmthKby0aNm9aoyutsNfOMm3ZwpDqO6dqagbVsEvqB2FvuopltXEdNm1NVitn2MZru2WrZ1M5iz2V7MGZHVpttKXPtw9V6955tCxzTeu87omhZ49UuleWYYtqsLvT4KhC4-nsZ46DzdVind2Ey_vr22y-DFUkpAhnKZaqgJQiSZhWooRUxPGMJEiUKkIJKEQySzgWwIskTUUpYgGUFpQILsrpOJh856rOed9RlbedbrDb5RzyfZn5vsz8t8wBkN_Aiza0--c7Xyznd3_sF0HgfQ0</recordid><startdate>201809</startdate><enddate>201809</enddate><creator>Mao, Yanjun</creator><creator>Guo, Liping</creator><creator>Ning, Xiaohui</creator><creator>Li, Jian</creator><creator>Zheng, Jianbin</creator><scope>AAYXX</scope><scope>CITATION</scope></search><sort><creationdate>201809</creationdate><title>The Signal Amplification in Electrochemical Detection of Chloramphenicol Using Sulfonated Polyaniline‐chitosan Composite as Redox Capacitor</title><author>Mao, Yanjun ; Guo, Liping ; Ning, Xiaohui ; Li, Jian ; Zheng, Jianbin</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c2898-76adcb06e29ea6f8d068447e909a9c2a90a885751ab01b5668d8480e6be5818d3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2018</creationdate><topic>Chloramphenicol</topic><topic>Electrochemical detection</topic><topic>Redox capacitor</topic><topic>Signal amplification</topic><topic>Sulfonated polyaniline</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Mao, Yanjun</creatorcontrib><creatorcontrib>Guo, Liping</creatorcontrib><creatorcontrib>Ning, Xiaohui</creatorcontrib><creatorcontrib>Li, Jian</creatorcontrib><creatorcontrib>Zheng, Jianbin</creatorcontrib><collection>CrossRef</collection><jtitle>Electroanalysis (New York, N.Y.)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Mao, Yanjun</au><au>Guo, Liping</au><au>Ning, Xiaohui</au><au>Li, Jian</au><au>Zheng, Jianbin</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>The Signal Amplification in Electrochemical Detection of Chloramphenicol Using Sulfonated Polyaniline‐chitosan Composite as Redox Capacitor</atitle><jtitle>Electroanalysis (New York, N.Y.)</jtitle><date>2018-09</date><risdate>2018</risdate><volume>30</volume><issue>9</issue><spage>2085</spage><epage>2093</epage><pages>2085-2093</pages><issn>1040-0397</issn><eissn>1521-4109</eissn><abstract>In this work, a novel redox capacitor was designed for signal amplification in electrochemical detection. It was fabricated by co‐electrodeposition of a conducting polymer, sulfonated polyaniline (SPAN) and chitosan on a glass carbon electrode, and its function was evaluated for being a localized source to transfer electron between FcCOOH (Fc) and Ru(NH3)6Cl3 in solution via redox cycling. Furthermore, the electrochemical detection of chloramphenicol, a broad‐spectrum antibiotic was performed using the redox capacitor in the presence of Fc. A significant amplification in cathodic current response of chloramphenicol was obtained through a continuous redox‐cycling reaction. The performance of the amplifying signal responded linearly to chloramphenicol in a concentration range of 0.05 to 50.0 μmol L−1 with a low detection limit of 0.01 μmol L−1. The proposed approach exhibited good reproducibility and stability, and could be used for detection of chloramphenicol in eye drops by standard addition method with the recoveries from 96.5 % to 103.0 %.</abstract><doi>10.1002/elan.201800218</doi><tpages>9</tpages></addata></record> |
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subjects | Chloramphenicol Electrochemical detection Redox capacitor Signal amplification Sulfonated polyaniline |
title | The Signal Amplification in Electrochemical Detection of Chloramphenicol Using Sulfonated Polyaniline‐chitosan Composite as Redox Capacitor |
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