2015
DOI: 10.1016/j.electacta.2015.06.086
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Hierarchical NiO Superstructures/Foam Ni Electrode Derived from Ni Metal-Organic Framework Flakes on Foam Ni for Glucose Sensing

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Cited by 83 publications
(26 citation statements)
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References 51 publications
(58 reference statements)
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“…The slop of 0.32 for MOR on the synthesized nanocatalyst (Figure S3(A)) corroborates the diffusion mechanism for this reaction. The linear relation between peak potential and log ν that has been shown in Figure S3(B), indicates that methanol oxidation on the surface of Pt/NiO−GO/NF is a process based on the irreversible and charge transfer process .…”
Section: Resultsmentioning
confidence: 82%
See 1 more Smart Citation
“…The slop of 0.32 for MOR on the synthesized nanocatalyst (Figure S3(A)) corroborates the diffusion mechanism for this reaction. The linear relation between peak potential and log ν that has been shown in Figure S3(B), indicates that methanol oxidation on the surface of Pt/NiO−GO/NF is a process based on the irreversible and charge transfer process .…”
Section: Resultsmentioning
confidence: 82%
“…Herein, NF is used as a substrate and, its modification is performed with Pt/NiO−GO nanocomposite without adherent materials. 3D porous structure of NF along high conductivity and high surface area produce beneficial substrate . Moreover, election of NiO as NF integument due to its properties such as lowness of price, stability, low poisoning, and reversible electrochemical activity is a advised selection.…”
Section: Introductionmentioning
confidence: 99%
“…A composite of AuNPs/ZIF‐8 was constructed by embedding of AuNPs in the MOF for the detection of hydrazine . In this method, the control of spatial distribution of pre‐synthesized nanoparticles incorporated in the MOFs is difficult, which results in the low repeatability of the formed modified electrodes …”
Section: Electrochemical Sensors Based On the Modification Of Mofs Onmentioning
confidence: 99%
“…High degree of porosity and uniformity, narrow pore‐size distribution, and large surface area of the obtained porous carbon materials accounted for their excellent sensing performance . Non‐enzymatic glucose sensors constructed from various NMOF‐derived materials featuring low detection limits and high sensitivities have been also reported . For instance, Wei and co‐workers reported highly sensitive non‐enzymatic glucose sensor based on the use NMOF‐derived Cu/C nanostructures .…”
Section: Applications Of Nmof‐derived Inorganic Hybrid Nanomaterialsmentioning
confidence: 99%