ox-np oxygen microsensor Search Results


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Unisense A/S oxygen concentration microsensor
a Schematic of experimental setup. b Hydrogen flux Φ H2 as a function of current density I measured with a mass spectrometer (Supplementary Fig. ). Solid red line marks the Faraday law Φ H2 = I /2 F , where F is the Faraday constant. c Oxygen flux Φ O2 as a function of I measured using the oxygen <t>microsensor</t> (Supplementary Fig. ). Solid red line marks the Faraday law Φ O2 = I /4 F . Data obtained using a V -bias range from 0–3 V. Error bars, SD.
Oxygen Concentration Microsensor, supplied by Unisense A/S, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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oxygen concentration microsensor - by Bioz Stars, 2026-10
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a Schematic of experimental setup. b Hydrogen flux Φ H2 as a function of current density I measured with a mass spectrometer (Supplementary Fig. ). Solid red line marks the Faraday law Φ H2 = I /2 F , where F is the Faraday constant. c Oxygen flux Φ O2 as a function of I measured using the oxygen microsensor (Supplementary Fig. ). Solid red line marks the Faraday law Φ O2 = I /4 F . Data obtained using a V -bias range from 0–3 V. Error bars, SD.

Journal: Nature Communications

Article Title: Wien effect in interfacial water dissociation through proton-permeable graphene electrodes

doi: 10.1038/s41467-022-33451-1

Figure Lengend Snippet: a Schematic of experimental setup. b Hydrogen flux Φ H2 as a function of current density I measured with a mass spectrometer (Supplementary Fig. ). Solid red line marks the Faraday law Φ H2 = I /2 F , where F is the Faraday constant. c Oxygen flux Φ O2 as a function of I measured using the oxygen microsensor (Supplementary Fig. ). Solid red line marks the Faraday law Φ O2 = I /4 F . Data obtained using a V -bias range from 0–3 V. Error bars, SD.

Article Snippet: Three outlets were machined within the container to let through the oxygen concentration microsensor (Unisense, OX-NP series Clark microelectrode ), a needle connected with an Argon supply and a Pt wire electrode.

Techniques: Mass Spectrometry