Optical Oxygen Sensing and Clark Electrode: Face-to-Face in a Biosensor Case Study.

adhesion control biofouling biosensor fluorinated material lab-on-chip microfluidics modified nanodiamond nanostructured surface optical sensor oxygen sensor surface modification

Journal

Sensors (Basel, Switzerland)
ISSN: 1424-8220
Titre abrégé: Sensors (Basel)
Pays: Switzerland
ID NLM: 101204366

Informations de publication

Date de publication:
08 Oct 2022
Historique:
received: 01 09 2022
revised: 25 09 2022
accepted: 06 10 2022
entrez: 14 10 2022
pubmed: 15 10 2022
medline: 18 10 2022
Statut: epublish

Résumé

In the last decade, there has been continuous competition between two methods for detecting the concentration of dissolved oxygen: amerometric (Clark electrode) and optical (quenching of the phosphorescence of the porphyrin metal complex). Each of them has obvious advantages and disadvantages. This competition is especially acute in the development of biosensors, however, an unbiased comparison is extremely difficult to achieve, since only a single detection method is used in each particular study. In this work, a microfluidic system with synchronous detection of the oxygen concentration by two methods was created for the purpose of direct comparison. The receptor element is represented by

Identifiants

pubmed: 36236726
pii: s22197626
doi: 10.3390/s22197626
pmc: PMC9572888
pii:
doi:

Substances chimiques

Porphyrins 0
Oxygen S88TT14065

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Subventions

Organisme : Ministry of Science and Higher Education of the Russian Federation
ID : state assignment on the topic "Synthesis of targeted biologically active ionic compounds and new biocomposite materials" (FEWG-2021-0011).

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Auteurs

Pavel V Melnikov (PV)

M. V. Lomonosov Institute of Fine Chemical Technologies, MIREA-Russian Technological University, Prosp. Vernadskogo 86, 119571 Moscow, Russia.

Anastasia Yu Alexandrovskaya (AY)

M. V. Lomonosov Institute of Fine Chemical Technologies, MIREA-Russian Technological University, Prosp. Vernadskogo 86, 119571 Moscow, Russia.
Federal State Unitary Enterprise Research and Technical Center of Radiation-Chemical Safety and Hygiene, Federal Medical-Biological Agency, 117105 Moscow, Russia.

Alina O Naumova (AO)

M. V. Lomonosov Institute of Fine Chemical Technologies, MIREA-Russian Technological University, Prosp. Vernadskogo 86, 119571 Moscow, Russia.

Vyacheslav A Arlyapov (VA)

Laboratory of Biologically Active Compounds and Biocomposites, Tula State University, Lenin Prosp. 92, 300012 Tula, Russia.

Olga A Kamanina (OA)

Laboratory of Biologically Active Compounds and Biocomposites, Tula State University, Lenin Prosp. 92, 300012 Tula, Russia.

Nadezhda M Popova (NM)

Federal State Budgetary Institution of Science Institute of Physical Chemistry and Electrochemistry of the Russian Academy of Sciences, Leninsky Prosp., 31 k. 4, 119071 Moscow, Russia.

Nikolay K Zaitsev (NK)

Econics-Expert Ltd., Akademika Bakuleva St., 6, 117513 Moscow, Russia.

Nikolay A Yashtulov (NA)

M. V. Lomonosov Institute of Fine Chemical Technologies, MIREA-Russian Technological University, Prosp. Vernadskogo 86, 119571 Moscow, Russia.

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Classifications MeSH