Electroanalytical application of screen-printed carbon electrode modified with conductive graphene oxide-poly(acrylic acid) film for label-free detection of human immunoglobulin G
© 2016 The Chemical Society of Japan. A facile and cost-effective modification of screen-printed carbon electrode employing a graphene oxide-poly(acrylic acid) film allows both good electrochemical reactivity and electrode surface functionalization with antibody. The analytical performances of the m...
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th-cmuir.6653943832-554742018-09-05T02:56:38Z Electroanalytical application of screen-printed carbon electrode modified with conductive graphene oxide-poly(acrylic acid) film for label-free detection of human immunoglobulin G Poachanee Norfun Watthanachai Jumpathong Nawee Kungwan Jaroon Jakmunee Kontad Ounnunkad Chemistry © 2016 The Chemical Society of Japan. A facile and cost-effective modification of screen-printed carbon electrode employing a graphene oxide-poly(acrylic acid) film allows both good electrochemical reactivity and electrode surface functionalization with antibody. The analytical performances of the modified electrode for detection of human immunoglobulin G (IgG) were satisfied with a linear concentration range of 1.0-100 ng mL-1, sensitivity of 1.2318 μA cm-2mL ng-1, and a limit of detection of 0.54 ng mL-1. The proposed electrode is promising in sensitive and selective clinical analysis to detect IgG at physiological concentration. 2018-09-05T02:56:38Z 2018-09-05T02:56:38Z 2016-01-01 Journal 13480715 03667022 2-s2.0-84996835436 10.1246/cl.160715 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84996835436&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/55474 |
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Chemistry Poachanee Norfun Watthanachai Jumpathong Nawee Kungwan Jaroon Jakmunee Kontad Ounnunkad Electroanalytical application of screen-printed carbon electrode modified with conductive graphene oxide-poly(acrylic acid) film for label-free detection of human immunoglobulin G |
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© 2016 The Chemical Society of Japan. A facile and cost-effective modification of screen-printed carbon electrode employing a graphene oxide-poly(acrylic acid) film allows both good electrochemical reactivity and electrode surface functionalization with antibody. The analytical performances of the modified electrode for detection of human immunoglobulin G (IgG) were satisfied with a linear concentration range of 1.0-100 ng mL-1, sensitivity of 1.2318 μA cm-2mL ng-1, and a limit of detection of 0.54 ng mL-1. The proposed electrode is promising in sensitive and selective clinical analysis to detect IgG at physiological concentration. |
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Poachanee Norfun Watthanachai Jumpathong Nawee Kungwan Jaroon Jakmunee Kontad Ounnunkad |
author_facet |
Poachanee Norfun Watthanachai Jumpathong Nawee Kungwan Jaroon Jakmunee Kontad Ounnunkad |
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Poachanee Norfun |
title |
Electroanalytical application of screen-printed carbon electrode modified with conductive graphene oxide-poly(acrylic acid) film for label-free detection of human immunoglobulin G |
title_short |
Electroanalytical application of screen-printed carbon electrode modified with conductive graphene oxide-poly(acrylic acid) film for label-free detection of human immunoglobulin G |
title_full |
Electroanalytical application of screen-printed carbon electrode modified with conductive graphene oxide-poly(acrylic acid) film for label-free detection of human immunoglobulin G |
title_fullStr |
Electroanalytical application of screen-printed carbon electrode modified with conductive graphene oxide-poly(acrylic acid) film for label-free detection of human immunoglobulin G |
title_full_unstemmed |
Electroanalytical application of screen-printed carbon electrode modified with conductive graphene oxide-poly(acrylic acid) film for label-free detection of human immunoglobulin G |
title_sort |
electroanalytical application of screen-printed carbon electrode modified with conductive graphene oxide-poly(acrylic acid) film for label-free detection of human immunoglobulin g |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84996835436&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/55474 |
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