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Tytuł pozycji:

Silicon Carbide Nanoparticles-Based Nanofibrous Membrane in Comparison With Thin-Film Enzymatic Glucose Sensor.

Tytuł:
Silicon Carbide Nanoparticles-Based Nanofibrous Membrane in Comparison With Thin-Film Enzymatic Glucose Sensor.
Autorzy:
Puttananjegowda K
Takshi A
Thomas S
Źródło:
IEEE transactions on nanobioscience [IEEE Trans Nanobioscience] 2021 Oct; Vol. 20 (4), pp. 577-580. Date of Electronic Publication: 2021 Sep 30.
Typ publikacji:
Journal Article; Research Support, Non-U.S. Gov't
Język:
English
Imprint Name(s):
Original Publication: Piscataway, NJ : Institute of Electrical and Electronics Engineers, c2002-
MeSH Terms:
Biosensing Techniques*
Nanofibers*
Nanoparticles*
Carbon Compounds, Inorganic ; Electrochemical Techniques ; Electrodes ; Glucose ; Silicon Compounds
Substance Nomenclature:
0 (Carbon Compounds, Inorganic)
0 (Silicon Compounds)
IY9XDZ35W2 (Glucose)
WXQ6E537EW (silicon carbide)
Entry Date(s):
Date Created: 20210726 Date Completed: 20211101 Latest Revision: 20211101
Update Code:
20240105
DOI:
10.1109/TNB.2021.3100466
PMID:
34310315
Czasopismo naukowe
This work presents, silicon carbide nanoparticles (SiCNPs) embedded in a conductive polymer (CP) to be electrospun to fabricate a nanofibrous membrane and a thin-film. Electrochemical enzymatic glucose sensing mechanism of an electrospun nanofibrous membrane (ENFM) of SiCNPs in a CP compared to a spin-coated-thin-film (SCTF) of SiCNPs in a CP. Fiber alignment in the form of a matrix is a key factor that determines the physical properties of nanofiber membrane compared to thin-film. It is found that glucose sensing electrodes formed by a SiCNPs-ENFM has enhanced binding of the glucose oxidase (GO x ) enzyme within the fibrous membrane as compared to a SiCNPs-SCTF. The SiCNPs-ENFM and SiCNPs-SCTF glucose sensing electrodes were characterized for morphology by using scanning electron microscopy (SEM) and for electrochemical activity by using cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS) and chronoamperometry (CA) methods. SiCNPs-ENFM based glucose electrodes shown a detection range from a 0.5 mM to 20 mM concentration with a better sensitivity of [Formula: see text]/gmMcm 2 , and low limit of detection (LOD) 552.89 nM compared to SiCNPs-SCTF with sensitivity of [Formula: see text]/gmMcm 2 and LOD of [Formula: see text]. The change in current level with SiCNPs-ENFM was ~14% contrast to ~75% with the SiCNPs-SCTF based glucose sensor over 50 days. The electrochemical analysis results demonstrated that the SiCNPs-ENFM electrode provides enhanced sensitivity, better limit of detection (LOD), and durability compared to SiCNPs-SCTF based glucose sensing electrode.

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