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Electrochemical glucose sensing characteristics of two-dimensional faceted and non-faceted CuO nanoribbons

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dc.contributor.author Sahoo, Rakesh K.
dc.contributor.author Das, Arya
dc.contributor.author Samantaray, Koyel
dc.contributor.author Singh, Saroj K.
dc.contributor.author Mane, Rajaram S.
dc.contributor.author Shin, Heon-Cheol
dc.contributor.author Yun, Je Moon
dc.contributor.author Kim, Kwang Ho
dc.date.accessioned 2019-06-28T07:26:19Z
dc.date.available 2019-06-28T07:26:19Z
dc.date.issued 2019
dc.identifier.citation Crystengcomm, 21(10), 2019: 1607-1616
dc.identifier.issn 1466-8033
dc.identifier.uri http://ore.immt.res.in/handle/2018/2553
dc.description Ministry of Science, ICT & Future Planning [2013 M3A6B1078874]; National Core Research Centre (NCRC) grant [2015M3A6B1065262]
dc.description.abstract We present faceted and non-faceted crystal cupric oxide (CuO) nanoribbons synthesized by different processes for glucose-sensing applications. The faceted and non-faceted CuO nanoribbons are grown via hydrothermal and microwave heating processes, respectively. Their growth mechanisms are considered as surface energy kinetics supported by a chemical simulation process. Both methods follow a redox precipitation mode for the formation of the nanostructures. Both faceted and non-faceted CuO nanostructures are revealed to exhibit different morphologies, but they have a single crystal structure. In a non-enzymatic glucose sensor, the amperometric oxidation currents of both faceted and non-faceted CuO electrodes increase proportionally as the glucose concentration increases gradually from 0.05 to 3.5 mM. However, the faceted CuO exhibits higher crystallinity with much more surface-active sites as faceted crystal planes compared to the non-faceted ones. Therefore, the glucose sensitivity of a faceted CuO electrode is superior to that of a non-faceted CuO one. The electrochemical glucose detection of the faceted CuO electrode shows a minimum concentration of 58 mu M and a specific current sensing of 412 mu A mM(-1) cm(-2), whereas the non-faceted CuO electrode shows low sensitivities of 71 mu M and 356 mu A mM(-1) cm(-2).
dc.language en
dc.publisher Royal Society Chemistry
dc.relation.isreferencedby SCI
dc.rights Copyright [2019]. All efforts have been made to respect the copyright to the best of our knowledge. Inadvertent omissions, if brought to our notice, stand for correction and withdrawal of document from this repository.
dc.subject Chemical Sciences
dc.title Electrochemical glucose sensing characteristics of two-dimensional faceted and non-faceted CuO nanoribbons
dc.type Journal Article
dc.affiliation.author Pusan Natl Univ, 30 Jangjeon Dong, Busan 609735, South Korea


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