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Plasticizer and catalyst co-functionalized PEDOT:PSS enables stretchable electrochemical sensing of living cells

Recently, stretchable electrochemical sensors have stood out as a powerful tool for the detection of soft cells and tissues, since they could perfectly comply with the deformation of living organisms and synchronously monitor mechanically evoked biomolecule release. However, existing strategies for...

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Autores principales: Yan, Jing, Qin, Yu, Fan, Wen-Ting, Wu, Wen-Tao, Lv, Song-Wei, Yan, Li-Ping, Liu, Yan-Ling, Huang, Wei-Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8580016/
https://www.ncbi.nlm.nih.gov/pubmed/34880994
http://dx.doi.org/10.1039/d1sc04138j
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author Yan, Jing
Qin, Yu
Fan, Wen-Ting
Wu, Wen-Tao
Lv, Song-Wei
Yan, Li-Ping
Liu, Yan-Ling
Huang, Wei-Hua
author_facet Yan, Jing
Qin, Yu
Fan, Wen-Ting
Wu, Wen-Tao
Lv, Song-Wei
Yan, Li-Ping
Liu, Yan-Ling
Huang, Wei-Hua
author_sort Yan, Jing
collection PubMed
description Recently, stretchable electrochemical sensors have stood out as a powerful tool for the detection of soft cells and tissues, since they could perfectly comply with the deformation of living organisms and synchronously monitor mechanically evoked biomolecule release. However, existing strategies for the fabrication of stretchable electrochemical sensors still face with huge challenges due to scarce electrode materials, demanding processing techniques and great complexity in further functionalization. Herein, we report a novel and facile strategy for one-step preparation of stretchable electrochemical biosensors by doping ionic liquid and catalyst into a conductive polymer (poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate), PEDOT:PSS). Bis(trifluoromethane) sulfonimide lithium salt as a small-molecule plasticizer can significantly improve the stretchability and conductivity of the PEDOT:PSS film, and cobalt phthalocyanine as an electrocatalyst endows the film with excellent electrochemical sensing performance. Moreover, the functionalized PEDOT:PSS retained good cell biocompatibility with two extra dopants. These satisfactory properties allowed the real-time monitoring of stretch-induced transient hydrogen peroxide release from cells. This work presents a versatile strategy to fabricate conductive polymer-based stretchable electrodes with easy processing and excellent performance, which benefits the in-depth exploration of sophisticated life activities by electrochemical sensing.
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spelling pubmed-85800162021-12-07 Plasticizer and catalyst co-functionalized PEDOT:PSS enables stretchable electrochemical sensing of living cells Yan, Jing Qin, Yu Fan, Wen-Ting Wu, Wen-Tao Lv, Song-Wei Yan, Li-Ping Liu, Yan-Ling Huang, Wei-Hua Chem Sci Chemistry Recently, stretchable electrochemical sensors have stood out as a powerful tool for the detection of soft cells and tissues, since they could perfectly comply with the deformation of living organisms and synchronously monitor mechanically evoked biomolecule release. However, existing strategies for the fabrication of stretchable electrochemical sensors still face with huge challenges due to scarce electrode materials, demanding processing techniques and great complexity in further functionalization. Herein, we report a novel and facile strategy for one-step preparation of stretchable electrochemical biosensors by doping ionic liquid and catalyst into a conductive polymer (poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate), PEDOT:PSS). Bis(trifluoromethane) sulfonimide lithium salt as a small-molecule plasticizer can significantly improve the stretchability and conductivity of the PEDOT:PSS film, and cobalt phthalocyanine as an electrocatalyst endows the film with excellent electrochemical sensing performance. Moreover, the functionalized PEDOT:PSS retained good cell biocompatibility with two extra dopants. These satisfactory properties allowed the real-time monitoring of stretch-induced transient hydrogen peroxide release from cells. This work presents a versatile strategy to fabricate conductive polymer-based stretchable electrodes with easy processing and excellent performance, which benefits the in-depth exploration of sophisticated life activities by electrochemical sensing. The Royal Society of Chemistry 2021-10-12 /pmc/articles/PMC8580016/ /pubmed/34880994 http://dx.doi.org/10.1039/d1sc04138j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Yan, Jing
Qin, Yu
Fan, Wen-Ting
Wu, Wen-Tao
Lv, Song-Wei
Yan, Li-Ping
Liu, Yan-Ling
Huang, Wei-Hua
Plasticizer and catalyst co-functionalized PEDOT:PSS enables stretchable electrochemical sensing of living cells
title Plasticizer and catalyst co-functionalized PEDOT:PSS enables stretchable electrochemical sensing of living cells
title_full Plasticizer and catalyst co-functionalized PEDOT:PSS enables stretchable electrochemical sensing of living cells
title_fullStr Plasticizer and catalyst co-functionalized PEDOT:PSS enables stretchable electrochemical sensing of living cells
title_full_unstemmed Plasticizer and catalyst co-functionalized PEDOT:PSS enables stretchable electrochemical sensing of living cells
title_short Plasticizer and catalyst co-functionalized PEDOT:PSS enables stretchable electrochemical sensing of living cells
title_sort plasticizer and catalyst co-functionalized pedot:pss enables stretchable electrochemical sensing of living cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8580016/
https://www.ncbi.nlm.nih.gov/pubmed/34880994
http://dx.doi.org/10.1039/d1sc04138j
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