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3D CoMoO<sub>4</sub> nanoflake arrays decorated disposable pencil graphite electrode for selective and sensitive enzyme-less electrochemical glucose sensors
Indexado
WoS WOS:000788369100002
Scopus SCOPUS_ID:85128891198
DOI 10.1007/S00604-022-05270-0
Año 2022
Tipo artículo de investigación

Citas Totales

Autores Afiliación Chile

Instituciones Chile

% Participación
Internacional

Autores
Afiliación Extranjera

Instituciones
Extranjeras


Abstract



Three-dimensional (3D) cobalt molybdate (CoMoO4) hierarchical nanoflake arrays on pencil graphite electrode (PGE) (CoMoO4/PGE) are actualized via one-pot hydrothermal technique. The morphological features comprehend that the CoMoO4 nanoflake arrays expose the 3D, open, porous, and interconnected network architectures on PGE. The formation and growth mechanisms of CoMoO4 nanostructures on PGE are supported with different structural and morphological characterizations. The constructed CoMoO4/PGE is operated as an electrocatalytic probe in enzyme-less electrochemical glucose sensor (ELEGS), confronting the impairments of cost- and time-obsessed conventional electrode polishing and catalyst amendment progressions and obliged the employment of a non-conducting binder. The wide-opened interior and exterior architectures of CoMoO4 nanoflake arrays escalate the glucose utilization efficacy, whilst the intertwined nanoflakes and graphitic carbon layers, respectively, of CoMoO4 and PGE articulate the continual electron mobility and catalytically active channels of CoMoO4/PGE. It jointly escalates the ELEGS concerts of CoMoO4/PGE including high sensitivity (1613 mu A mM(-1) cm(-2)), wide linear glucose range (0.0003-10 mM), and low detection limit (0.12 mu M) at a working potential of 0.65 V (vs. Ag/AgCl) together with the good recovery in human serum. Thus, the fabricated CoMoO4/PGE extends exclusive virtues of modest electrode production, virtuous affinity, swift response, and excellent sensitivity and selectivity, exposing innovative prospects to reconnoitring the economically viable ELEGSs with binder-free, affordable cost, and expansible 3D electrocatalytic probes.

Revista



Revista ISSN
Microchimica Acta 0026-3672

Métricas Externas



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Disciplinas de Investigación



WOS
Chemistry, Analytical
Scopus
Sin Disciplinas
SciELO
Sin Disciplinas

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Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.

Colaboración Institucional



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Autores - Afiliación



Ord. Autor Género Institución - País
1 Priyanga, N. - GTN Arts Coll Autonomous - India
Madurai Kamaraj Univ - India
GTN Arts College India - India
Madurai Kamaraj University - India
2 Sasikumar, K. - Sacred Heart Coll Autonomous - India
Sacred Heart College, Tirupattur - India
3 Raja, A. Sahaya - GTN Arts Coll Autonomous - India
GTN Arts College India - India
4 Pannipara, Mehboobali - King Khalid Univ - Arabia Saudí
King Khalid University - Arabia Saudí
5 Al-Sehemi, Abdullah G. Hombre King Khalid Univ - Arabia Saudí
King Khalid University - Arabia Saudí
6 Michael, R. Jude Vimal - Sacred Heart Coll Autonomous - India
Sacred Heart College, Tirupattur - India
7 Kumar, M. Praveen - Universidad de Concepción - Chile
8 Alphonsa, A. Therasa - Govt Arts Coll - India
Government Arts College, Chidambaram - India
9 Kumar, G. Gnana - Madurai Kamaraj Univ - India
Madurai Kamaraj University - India

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Financiamiento



Fuente
King Khalid University
Council of Scientific and Industrial Research, India
Department of Science and Technology, Ministry of Science and Technology, India
Department of Science and Technology (DST), New Delhi Project
Council of Scientific and Industrial Research (CSIR), New Delhi Major Project
King Khalid University through Research Center for Advanced Materials Science (RCAMS)
Research Center for Advanced Materials Science

Muestra la fuente de financiamiento declarada en la publicación.

Agradecimientos



Agradecimiento
This study was supported by the Department of Science and Technology (DST), New Delhi Project Grant No.: DST/TMD/HFC/2K18/52(G) and Council of Scientific and Industrial Research (CSIR), New Delhi Major Project Grant No.: 01(2997)19/EMR-II. The authors are thankful to the support and funding of King Khalid University through Research Center for Advanced Materials Science (RCAMS) under grant no: RCAMS/KKU/p001-21.
This study was supported by the Department of Science and Technology (DST), New Delhi Project Grant No.: DST/TMD/HFC/2K18/52(G) and Council of Scientific and Industrial Research (CSIR), New Delhi Major Project Grant No.: 01(2997)19/EMR-II. The authors are thankful to the support and funding of King Khalid University through Research Center for Advanced Materials Science (RCAMS) under grant no: RCAMS/KKU/p001-21.

Muestra la fuente de financiamiento declarada en la publicación.