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Myoglobin- and Hydroxyapatite-Doped Carbon Nanofiber-Modified Electrodes for Electrochemistry and Electrocatalysis
[Image: see text] In this paper, a hydroxyapatite (HAp)-doped carbon nanofiber (CNF)-modified carbon ionic liquid electrode (CILE) was prepared and used for the investigation on the direct electrochemistry and electrocatalysis of myoglobin (Mb). HAp nanoparticles were mixed within a polyacrylonitril...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2019
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6761753/ https://www.ncbi.nlm.nih.gov/pubmed/31572867 http://dx.doi.org/10.1021/acsomega.9b02151 |
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author | Liu, Juan Weng, Wenju Xie, Hui Luo, Guiling Li, Guangjiu Sun, Wei Ruan, Chengxiang Wang, Xianghui |
author_facet | Liu, Juan Weng, Wenju Xie, Hui Luo, Guiling Li, Guangjiu Sun, Wei Ruan, Chengxiang Wang, Xianghui |
author_sort | Liu, Juan |
collection | PubMed |
description | [Image: see text] In this paper, a hydroxyapatite (HAp)-doped carbon nanofiber (CNF)-modified carbon ionic liquid electrode (CILE) was prepared and used for the investigation on the direct electrochemistry and electrocatalysis of myoglobin (Mb). HAp nanoparticles were mixed within a polyacrylonitrile (PAN) solution, and a HAp@PAN nanofiber was synthesized by electrospinning process, which was further controlled by carbonization at 800 °C for 2 h in a nitrogen atmosphere to get a HAp@CNF nanocomposite. Various techniques were used to check the physicochemical properties of HAp@CNF. Mb was mixed with a HAp@CNF dispersion solution and casted on the surface of CILE to obtain an electrochemical sensing platform. The direct electrochemistry of Mb on the modified electrode was checked when a pair of enhanced redox waves appeared, indicating the direct electron transfer of Mb. HAp@CNF exhibited high conductivity, good biocompatibility, and large surface area, which was beneficial for Mb immobilization. The modified electrode showed excellent electrocatalytic activity toward the reduction of trichloroacetic acid and sodium nitrite, which was further used to establish a new electroanalytical method. Real samples were analyzed by the proposed method with satisfactory results. |
format | Online Article Text |
id | pubmed-6761753 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-67617532019-09-30 Myoglobin- and Hydroxyapatite-Doped Carbon Nanofiber-Modified Electrodes for Electrochemistry and Electrocatalysis Liu, Juan Weng, Wenju Xie, Hui Luo, Guiling Li, Guangjiu Sun, Wei Ruan, Chengxiang Wang, Xianghui ACS Omega [Image: see text] In this paper, a hydroxyapatite (HAp)-doped carbon nanofiber (CNF)-modified carbon ionic liquid electrode (CILE) was prepared and used for the investigation on the direct electrochemistry and electrocatalysis of myoglobin (Mb). HAp nanoparticles were mixed within a polyacrylonitrile (PAN) solution, and a HAp@PAN nanofiber was synthesized by electrospinning process, which was further controlled by carbonization at 800 °C for 2 h in a nitrogen atmosphere to get a HAp@CNF nanocomposite. Various techniques were used to check the physicochemical properties of HAp@CNF. Mb was mixed with a HAp@CNF dispersion solution and casted on the surface of CILE to obtain an electrochemical sensing platform. The direct electrochemistry of Mb on the modified electrode was checked when a pair of enhanced redox waves appeared, indicating the direct electron transfer of Mb. HAp@CNF exhibited high conductivity, good biocompatibility, and large surface area, which was beneficial for Mb immobilization. The modified electrode showed excellent electrocatalytic activity toward the reduction of trichloroacetic acid and sodium nitrite, which was further used to establish a new electroanalytical method. Real samples were analyzed by the proposed method with satisfactory results. American Chemical Society 2019-09-11 /pmc/articles/PMC6761753/ /pubmed/31572867 http://dx.doi.org/10.1021/acsomega.9b02151 Text en Copyright © 2019 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes. |
spellingShingle | Liu, Juan Weng, Wenju Xie, Hui Luo, Guiling Li, Guangjiu Sun, Wei Ruan, Chengxiang Wang, Xianghui Myoglobin- and Hydroxyapatite-Doped Carbon Nanofiber-Modified Electrodes for Electrochemistry and Electrocatalysis |
title | Myoglobin- and Hydroxyapatite-Doped Carbon Nanofiber-Modified
Electrodes for Electrochemistry and Electrocatalysis |
title_full | Myoglobin- and Hydroxyapatite-Doped Carbon Nanofiber-Modified
Electrodes for Electrochemistry and Electrocatalysis |
title_fullStr | Myoglobin- and Hydroxyapatite-Doped Carbon Nanofiber-Modified
Electrodes for Electrochemistry and Electrocatalysis |
title_full_unstemmed | Myoglobin- and Hydroxyapatite-Doped Carbon Nanofiber-Modified
Electrodes for Electrochemistry and Electrocatalysis |
title_short | Myoglobin- and Hydroxyapatite-Doped Carbon Nanofiber-Modified
Electrodes for Electrochemistry and Electrocatalysis |
title_sort | myoglobin- and hydroxyapatite-doped carbon nanofiber-modified
electrodes for electrochemistry and electrocatalysis |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6761753/ https://www.ncbi.nlm.nih.gov/pubmed/31572867 http://dx.doi.org/10.1021/acsomega.9b02151 |
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