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Information Journal Paper

Title

Study of adsorption and electric conductivities of Cu2O-GSand ZnO-GS nanostructures for detection of Glucose

Pages

  98-105

Abstract

 In this paper, adsorption and electric conductivities of Cu2O-GS and ZnO-GS nanostructures were investigated to fabricate of non-enzymatic Glucose sensor. The calculations are based on density functional theory (DFT). The calculation results showed that Glucose is well adsorbed by Cu2O-GS and ZnO-GS nanostructures. Also, these results showed that the electrical conductivity of Cu2O-GS nanostructure increased after Glucose detection. While Glucose adsorption on ZnO-GS decreases the electrical conductivity. The presented work demonstrated that the Cu2O-GS and ZnO-GS nanostructures could act as effective electron mediators for the fabrication of efficient non-enzymatic Glucose sensors.

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    APA: Copy

    Behzadi Meyabadi, s., Mohammadi Manesh, E., & Hassanpour Bezestani, z.. (2020). Study of adsorption and electric conductivities of Cu2O-GSand ZnO-GS nanostructures for detection of Glucose. NANOSCALE, 7(1 ), 98-105. SID. https://sid.ir/paper/256995/en

    Vancouver: Copy

    Behzadi Meyabadi s., Mohammadi Manesh E., Hassanpour Bezestani z.. Study of adsorption and electric conductivities of Cu2O-GSand ZnO-GS nanostructures for detection of Glucose. NANOSCALE[Internet]. 2020;7(1 ):98-105. Available from: https://sid.ir/paper/256995/en

    IEEE: Copy

    s. Behzadi Meyabadi, E. Mohammadi Manesh, and z. Hassanpour Bezestani, “Study of adsorption and electric conductivities of Cu2O-GSand ZnO-GS nanostructures for detection of Glucose,” NANOSCALE, vol. 7, no. 1 , pp. 98–105, 2020, [Online]. Available: https://sid.ir/paper/256995/en

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