Matches in SemOpenAlex for { <https://semopenalex.org/work/W4311609077> ?p ?o ?g. }
- W4311609077 endingPage "100136" @default.
- W4311609077 startingPage "100136" @default.
- W4311609077 abstract "Glucose detection using sensing materials has lately received interest due to the increased demand for sensitive and selective glucose sensors in pharmaceutical, clinical, and industrial settings. Carbon nanotubes (CNTs) are used intensively as a specific class of effective electrode substances in electrochemical sensing due to their large surface area and interesting physical and electrochemical characteristics. Nickel is an attractive transition metal for glucose electrooxidation with high catalytic activity. In this study, CNT/MoS2/NiNPs nanocomposites with different CNT/MoS2 ratios have been prepared by a hydrothermal reaction. The CNT/MoS2 nanocomposites were characterized by X-ray diffraction (XRD), Raman spectroscopy and Fourier transform infrared spectroscopy (FTIR), and their morphology and composition were characterized by field emission scanning electron microscopy (FESEM). Electrocatalytic activity of the as-prepared nanomaterials towards glucose oxidation was investigated by cyclic voltammetry and amperometry in alkaline media. An excellent sensitivity value of 1212 μA∙mM−1∙cm−2 with a wide linear range (0.05-0.65 mM), a low detection threshold of 0.197 μM and a short response time (3 s) were achieved by the hybrid CNT/MoS2/NiNPs sensor. Its superior catalytic activity and low cost make this hybrid very promising for applications in the direct sensing of glucose." @default.
- W4311609077 created "2022-12-27" @default.
- W4311609077 creator A5021119541 @default.
- W4311609077 creator A5034847267 @default.
- W4311609077 creator A5045622394 @default.
- W4311609077 creator A5053079398 @default.
- W4311609077 creator A5064593779 @default.
- W4311609077 creator A5066357171 @default.
- W4311609077 creator A5082608665 @default.
- W4311609077 date "2023-06-01" @default.
- W4311609077 modified "2023-10-15" @default.
- W4311609077 title "Highly efficient non-enzymatic electrochemical glucose sensor based on carbon nanotubes functionalized by molybdenum disulfide and decorated with nickel nanoparticles (GCE/CNT/MoS2/NiNPs)" @default.
- W4311609077 cites W1998889532 @default.
- W4311609077 cites W2046566876 @default.
- W4311609077 cites W2047358259 @default.
- W4311609077 cites W2137977053 @default.
- W4311609077 cites W2287242261 @default.
- W4311609077 cites W2337284330 @default.
- W4311609077 cites W2415242526 @default.
- W4311609077 cites W2509626593 @default.
- W4311609077 cites W2518681619 @default.
- W4311609077 cites W2524405927 @default.
- W4311609077 cites W2563856143 @default.
- W4311609077 cites W2609979605 @default.
- W4311609077 cites W2618000263 @default.
- W4311609077 cites W2626295072 @default.
- W4311609077 cites W2687150043 @default.
- W4311609077 cites W2736390409 @default.
- W4311609077 cites W2738563066 @default.
- W4311609077 cites W2739124548 @default.
- W4311609077 cites W2777821566 @default.
- W4311609077 cites W2791862776 @default.
- W4311609077 cites W2792448009 @default.
- W4311609077 cites W2792689593 @default.
- W4311609077 cites W2801328891 @default.
- W4311609077 cites W2801806808 @default.
- W4311609077 cites W2883232786 @default.
- W4311609077 cites W2884413158 @default.
- W4311609077 cites W2897336816 @default.
- W4311609077 cites W2908032197 @default.
- W4311609077 cites W2908513636 @default.
- W4311609077 cites W2914700667 @default.
- W4311609077 cites W2936029151 @default.
- W4311609077 cites W2942483053 @default.
- W4311609077 cites W2944463224 @default.
- W4311609077 cites W2947284321 @default.
- W4311609077 cites W2948247606 @default.
- W4311609077 cites W2955536216 @default.
- W4311609077 cites W2968888375 @default.
- W4311609077 cites W3009152084 @default.
- W4311609077 cites W3012888616 @default.
- W4311609077 cites W3015709937 @default.
- W4311609077 cites W3019179869 @default.
- W4311609077 cites W3021862213 @default.
- W4311609077 cites W3037443670 @default.
- W4311609077 cites W3039131653 @default.
- W4311609077 cites W3040353335 @default.
- W4311609077 cites W3046853010 @default.
- W4311609077 cites W3048581321 @default.
- W4311609077 cites W3049002075 @default.
- W4311609077 cites W3086239410 @default.
- W4311609077 cites W3088419728 @default.
- W4311609077 cites W3090352374 @default.
- W4311609077 cites W3127907039 @default.
- W4311609077 cites W3133532188 @default.
- W4311609077 cites W3140859295 @default.
- W4311609077 cites W3158504958 @default.
- W4311609077 cites W3170635644 @default.
- W4311609077 cites W3174460741 @default.
- W4311609077 cites W3178439329 @default.
- W4311609077 cites W3185632988 @default.
- W4311609077 cites W3192281969 @default.
- W4311609077 cites W3193097131 @default.
- W4311609077 cites W3197319935 @default.
- W4311609077 cites W4200234534 @default.
- W4311609077 cites W4206943430 @default.
- W4311609077 cites W4214889412 @default.
- W4311609077 cites W4223981680 @default.
- W4311609077 cites W4225756497 @default.
- W4311609077 cites W4281717489 @default.
- W4311609077 doi "https://doi.org/10.1016/j.snr.2022.100136" @default.
- W4311609077 hasPublicationYear "2023" @default.
- W4311609077 type Work @default.
- W4311609077 citedByCount "7" @default.
- W4311609077 countsByYear W43116090772023 @default.
- W4311609077 crossrefType "journal-article" @default.
- W4311609077 hasAuthorship W4311609077A5021119541 @default.
- W4311609077 hasAuthorship W4311609077A5034847267 @default.
- W4311609077 hasAuthorship W4311609077A5045622394 @default.
- W4311609077 hasAuthorship W4311609077A5053079398 @default.
- W4311609077 hasAuthorship W4311609077A5064593779 @default.
- W4311609077 hasAuthorship W4311609077A5066357171 @default.
- W4311609077 hasAuthorship W4311609077A5082608665 @default.
- W4311609077 hasBestOaLocation W43116090771 @default.
- W4311609077 hasConcept C120665830 @default.
- W4311609077 hasConcept C121332964 @default.
- W4311609077 hasConcept C127413603 @default.
- W4311609077 hasConcept C138631740 @default.