Electrochemical Performances of Electroactive Nano-LayeredOrganic-Inorganic Perovskite Containing Trivalent Iron Ion and its Use for a DNA Biosensor Preparation

A steady nano organic-inorganic perovskite hybrid with [H23-AMP]3/2Fe(CN)6 (3-AMP = 3-methylaminopyridine) was prepared in the air. The structure is an unusual layered organic-inorganic type. The resulting hybrid enveloped in paraffin to prepare [H23-AMP]3/2Fe(CN)6 paste electrode (HPE) shows good e...

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Main Authors: Jing Wu, Hanxing Liu, Zhidong Lin, Minghe Cao
Format: Article
Language:English
Published: Wiley 2010-01-01
Series:International Journal of Analytical Chemistry
Online Access:http://dx.doi.org/10.1155/2010/419439
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author Jing Wu
Hanxing Liu
Zhidong Lin
Minghe Cao
author_facet Jing Wu
Hanxing Liu
Zhidong Lin
Minghe Cao
author_sort Jing Wu
collection DOAJ
description A steady nano organic-inorganic perovskite hybrid with [H23-AMP]3/2Fe(CN)6 (3-AMP = 3-methylaminopyridine) was prepared in the air. The structure is an unusual layered organic-inorganic type. The resulting hybrid enveloped in paraffin to prepare [H23-AMP]3/2Fe(CN)6 paste electrode (HPE) shows good electrochemical activity and a couple of oxidation and reduction peaks with potential of cyclic voltammometry (CV) at around 440 mV and 30 mV. Compared with that on CPE, oxidation potential of Fe(CN)63- on HPE shifts negatively 259.7 mV and that of reduction shifts positively 338.7 mV, which exhibits that [H23-AMP]3/2Fe(CN)6 can accelerate the electron-transfer to improve the electrochemical reaction reversibility. Such characteristics of [H23-AMP]3/2Fe(CN)6 have been employed to prepare the DNA biosensor. The single-strand DNA (ssDNA) and double-strand DNA (dsDNA) immobilized on HPE, respectively, can improve the square wave voltammometry (SWV) current and SWV potential shifts positively. The effect of pH was evaluated. And there is hybridization peak on SWV curve using HPE immobilized ssDNA in the complementary ssDNA solution. And HPE immobilized ssDNA can be utilized to monitor the DNA hybridization and detect complementary ssDNA, covering range from 3.24×10−7 to 6.72×10−5 g/mL with detection limit of 1.57×10−7 g/mL. The DNA biosensor exhibits a good stability and reproducibility.
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spelling doaj-art-5b8637aea19d4723aca3be171ea85d682025-02-03T06:48:29ZengWileyInternational Journal of Analytical Chemistry1687-87601687-87792010-01-01201010.1155/2010/419439419439Electrochemical Performances of Electroactive Nano-LayeredOrganic-Inorganic Perovskite Containing Trivalent Iron Ion and its Use for a DNA Biosensor PreparationJing Wu0Hanxing Liu1Zhidong Lin2Minghe Cao3State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, ChinaState Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, ChinaSchool of Materials Science Engineering, Wuhan Institute of Technology, Wuhan, Hubei 430073, ChinaState Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, ChinaA steady nano organic-inorganic perovskite hybrid with [H23-AMP]3/2Fe(CN)6 (3-AMP = 3-methylaminopyridine) was prepared in the air. The structure is an unusual layered organic-inorganic type. The resulting hybrid enveloped in paraffin to prepare [H23-AMP]3/2Fe(CN)6 paste electrode (HPE) shows good electrochemical activity and a couple of oxidation and reduction peaks with potential of cyclic voltammometry (CV) at around 440 mV and 30 mV. Compared with that on CPE, oxidation potential of Fe(CN)63- on HPE shifts negatively 259.7 mV and that of reduction shifts positively 338.7 mV, which exhibits that [H23-AMP]3/2Fe(CN)6 can accelerate the electron-transfer to improve the electrochemical reaction reversibility. Such characteristics of [H23-AMP]3/2Fe(CN)6 have been employed to prepare the DNA biosensor. The single-strand DNA (ssDNA) and double-strand DNA (dsDNA) immobilized on HPE, respectively, can improve the square wave voltammometry (SWV) current and SWV potential shifts positively. The effect of pH was evaluated. And there is hybridization peak on SWV curve using HPE immobilized ssDNA in the complementary ssDNA solution. And HPE immobilized ssDNA can be utilized to monitor the DNA hybridization and detect complementary ssDNA, covering range from 3.24×10−7 to 6.72×10−5 g/mL with detection limit of 1.57×10−7 g/mL. The DNA biosensor exhibits a good stability and reproducibility.http://dx.doi.org/10.1155/2010/419439
spellingShingle Jing Wu
Hanxing Liu
Zhidong Lin
Minghe Cao
Electrochemical Performances of Electroactive Nano-LayeredOrganic-Inorganic Perovskite Containing Trivalent Iron Ion and its Use for a DNA Biosensor Preparation
International Journal of Analytical Chemistry
title Electrochemical Performances of Electroactive Nano-LayeredOrganic-Inorganic Perovskite Containing Trivalent Iron Ion and its Use for a DNA Biosensor Preparation
title_full Electrochemical Performances of Electroactive Nano-LayeredOrganic-Inorganic Perovskite Containing Trivalent Iron Ion and its Use for a DNA Biosensor Preparation
title_fullStr Electrochemical Performances of Electroactive Nano-LayeredOrganic-Inorganic Perovskite Containing Trivalent Iron Ion and its Use for a DNA Biosensor Preparation
title_full_unstemmed Electrochemical Performances of Electroactive Nano-LayeredOrganic-Inorganic Perovskite Containing Trivalent Iron Ion and its Use for a DNA Biosensor Preparation
title_short Electrochemical Performances of Electroactive Nano-LayeredOrganic-Inorganic Perovskite Containing Trivalent Iron Ion and its Use for a DNA Biosensor Preparation
title_sort electrochemical performances of electroactive nano layeredorganic inorganic perovskite containing trivalent iron ion and its use for a dna biosensor preparation
url http://dx.doi.org/10.1155/2010/419439
work_keys_str_mv AT jingwu electrochemicalperformancesofelectroactivenanolayeredorganicinorganicperovskitecontainingtrivalentironionanditsuseforadnabiosensorpreparation
AT hanxingliu electrochemicalperformancesofelectroactivenanolayeredorganicinorganicperovskitecontainingtrivalentironionanditsuseforadnabiosensorpreparation
AT zhidonglin electrochemicalperformancesofelectroactivenanolayeredorganicinorganicperovskitecontainingtrivalentironionanditsuseforadnabiosensorpreparation
AT minghecao electrochemicalperformancesofelectroactivenanolayeredorganicinorganicperovskitecontainingtrivalentironionanditsuseforadnabiosensorpreparation