Cargando…

Cyclophosphazene Intrinsically Derived Heteroatom (S, N, P, O)-Doped Carbon Nanoplates for Ultrasensitive Monitoring of Dopamine from Chicken Samples

A novel, metal-free electrode based on heteroatom (S, N, P, O)-doped carbon nanoplates (SNPO-CPL) modifying lead pencil graphite (LPG) has been synthesized by carbonizing a unique heteroatom (S, N, P, O)-containing novel polymer, poly(cyclcotriphosphazene-co-2,5-dioxy-1,4-dithiane) (PCD), for precis...

Descripción completa

Detalles Bibliográficos
Autores principales: Abbas, Yasir, Akhtar, Naeem, Ghaffar, Sania, Al-Sulami, Ahlam I., Asad, Muhammad, Mazhar, Muhammad Ehsan, Zafar, Farhan, Hayat, Akhtar, Wu, Zhanpeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9776138/
https://www.ncbi.nlm.nih.gov/pubmed/36551078
http://dx.doi.org/10.3390/bios12121106
_version_ 1784855802448707584
author Abbas, Yasir
Akhtar, Naeem
Ghaffar, Sania
Al-Sulami, Ahlam I.
Asad, Muhammad
Mazhar, Muhammad Ehsan
Zafar, Farhan
Hayat, Akhtar
Wu, Zhanpeng
author_facet Abbas, Yasir
Akhtar, Naeem
Ghaffar, Sania
Al-Sulami, Ahlam I.
Asad, Muhammad
Mazhar, Muhammad Ehsan
Zafar, Farhan
Hayat, Akhtar
Wu, Zhanpeng
author_sort Abbas, Yasir
collection PubMed
description A novel, metal-free electrode based on heteroatom (S, N, P, O)-doped carbon nanoplates (SNPO-CPL) modifying lead pencil graphite (LPG) has been synthesized by carbonizing a unique heteroatom (S, N, P, O)-containing novel polymer, poly(cyclcotriphosphazene-co-2,5-dioxy-1,4-dithiane) (PCD), for precise screening of dopamine (DA). The designed electrode, SNPO-CPL-800, with optimized percentage of S, N, P, O doping through the sp2-carbon chain, and a large number of surface defects (thus leading to a maximum exposition number of catalytic active sites) led to fast molecular diffusion through the micro-porous structure and facilitated strong binding interaction with the targeted molecules in the interactive signaling transducer at the electrode–electrolyte interface. The designed SNPO-CPL-800 electrode exhibited a sensitive and selective response towards DA monitoring, with a limit of detection (LOD) of 0.01 nM. We also monitored DA levels in commercially available chicken samples using the SNPO-CPL-800 electrode even in the presence of interfering species, thus proving the effectiveness of the designed electrode for the precise monitoring of DA in real samples. This research shows there is a strong potential for opening new windows for ultrasensitive DA monitoring with metal-free electrodes.
format Online
Article
Text
id pubmed-9776138
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97761382022-12-23 Cyclophosphazene Intrinsically Derived Heteroatom (S, N, P, O)-Doped Carbon Nanoplates for Ultrasensitive Monitoring of Dopamine from Chicken Samples Abbas, Yasir Akhtar, Naeem Ghaffar, Sania Al-Sulami, Ahlam I. Asad, Muhammad Mazhar, Muhammad Ehsan Zafar, Farhan Hayat, Akhtar Wu, Zhanpeng Biosensors (Basel) Article A novel, metal-free electrode based on heteroatom (S, N, P, O)-doped carbon nanoplates (SNPO-CPL) modifying lead pencil graphite (LPG) has been synthesized by carbonizing a unique heteroatom (S, N, P, O)-containing novel polymer, poly(cyclcotriphosphazene-co-2,5-dioxy-1,4-dithiane) (PCD), for precise screening of dopamine (DA). The designed electrode, SNPO-CPL-800, with optimized percentage of S, N, P, O doping through the sp2-carbon chain, and a large number of surface defects (thus leading to a maximum exposition number of catalytic active sites) led to fast molecular diffusion through the micro-porous structure and facilitated strong binding interaction with the targeted molecules in the interactive signaling transducer at the electrode–electrolyte interface. The designed SNPO-CPL-800 electrode exhibited a sensitive and selective response towards DA monitoring, with a limit of detection (LOD) of 0.01 nM. We also monitored DA levels in commercially available chicken samples using the SNPO-CPL-800 electrode even in the presence of interfering species, thus proving the effectiveness of the designed electrode for the precise monitoring of DA in real samples. This research shows there is a strong potential for opening new windows for ultrasensitive DA monitoring with metal-free electrodes. MDPI 2022-12-01 /pmc/articles/PMC9776138/ /pubmed/36551078 http://dx.doi.org/10.3390/bios12121106 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Abbas, Yasir
Akhtar, Naeem
Ghaffar, Sania
Al-Sulami, Ahlam I.
Asad, Muhammad
Mazhar, Muhammad Ehsan
Zafar, Farhan
Hayat, Akhtar
Wu, Zhanpeng
Cyclophosphazene Intrinsically Derived Heteroatom (S, N, P, O)-Doped Carbon Nanoplates for Ultrasensitive Monitoring of Dopamine from Chicken Samples
title Cyclophosphazene Intrinsically Derived Heteroatom (S, N, P, O)-Doped Carbon Nanoplates for Ultrasensitive Monitoring of Dopamine from Chicken Samples
title_full Cyclophosphazene Intrinsically Derived Heteroatom (S, N, P, O)-Doped Carbon Nanoplates for Ultrasensitive Monitoring of Dopamine from Chicken Samples
title_fullStr Cyclophosphazene Intrinsically Derived Heteroatom (S, N, P, O)-Doped Carbon Nanoplates for Ultrasensitive Monitoring of Dopamine from Chicken Samples
title_full_unstemmed Cyclophosphazene Intrinsically Derived Heteroatom (S, N, P, O)-Doped Carbon Nanoplates for Ultrasensitive Monitoring of Dopamine from Chicken Samples
title_short Cyclophosphazene Intrinsically Derived Heteroatom (S, N, P, O)-Doped Carbon Nanoplates for Ultrasensitive Monitoring of Dopamine from Chicken Samples
title_sort cyclophosphazene intrinsically derived heteroatom (s, n, p, o)-doped carbon nanoplates for ultrasensitive monitoring of dopamine from chicken samples
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9776138/
https://www.ncbi.nlm.nih.gov/pubmed/36551078
http://dx.doi.org/10.3390/bios12121106
work_keys_str_mv AT abbasyasir cyclophosphazeneintrinsicallyderivedheteroatomsnpodopedcarbonnanoplatesforultrasensitivemonitoringofdopaminefromchickensamples
AT akhtarnaeem cyclophosphazeneintrinsicallyderivedheteroatomsnpodopedcarbonnanoplatesforultrasensitivemonitoringofdopaminefromchickensamples
AT ghaffarsania cyclophosphazeneintrinsicallyderivedheteroatomsnpodopedcarbonnanoplatesforultrasensitivemonitoringofdopaminefromchickensamples
AT alsulamiahlami cyclophosphazeneintrinsicallyderivedheteroatomsnpodopedcarbonnanoplatesforultrasensitivemonitoringofdopaminefromchickensamples
AT asadmuhammad cyclophosphazeneintrinsicallyderivedheteroatomsnpodopedcarbonnanoplatesforultrasensitivemonitoringofdopaminefromchickensamples
AT mazharmuhammadehsan cyclophosphazeneintrinsicallyderivedheteroatomsnpodopedcarbonnanoplatesforultrasensitivemonitoringofdopaminefromchickensamples
AT zafarfarhan cyclophosphazeneintrinsicallyderivedheteroatomsnpodopedcarbonnanoplatesforultrasensitivemonitoringofdopaminefromchickensamples
AT hayatakhtar cyclophosphazeneintrinsicallyderivedheteroatomsnpodopedcarbonnanoplatesforultrasensitivemonitoringofdopaminefromchickensamples
AT wuzhanpeng cyclophosphazeneintrinsicallyderivedheteroatomsnpodopedcarbonnanoplatesforultrasensitivemonitoringofdopaminefromchickensamples