FIELD: measuring equipment; gas industry.
SUBSTANCE: group of inventions relates to the field of gas analysis. Method of producing a single-electrode gas sensor based on titanium wire, which according to the invention is oxidised by anodizing in an electrochemical cell, to form mesoporous oxide layer consisting of radially oriented ordered TiO2 nanotubes with wall thickness of up to 20 nm and inner diameter of up to 150 nm. Said method enables to obtain a single-electrode gas sensor, in which the heating and measuring electrodes used are titanium wire with diameter of 50–250 mcm, and catalytic layer is mesoporous oxide layer consisting of TiO2 nanotubes. This single-electrode sensor has response to organic pairs in the form of change of resistance at passage of operating current in range of 80–200 mA. For use in sensor devices, a single-electrode gas sensor is connected either directly to a current source, or connected to a voltage source through a divider, or connected to a bridge circuit, where compensating element is either passive resistor having resistance, close in value to resistance of oxidised titanium wire, or other single-electrode sensor based on oxidized titanium wire with different diameter of metal titanium. For selective analysis of gases based on a set of single-electrode gas sensors, the number of which is not less than three, make multisensor line, vector signal of which enables to distinguish effect of single-type vapors of alcohols, for example isopropanol and ethanol.
EFFECT: group of inventions enables to create a single-electrode gas sensor with low cost, as well as sensor devices based on such a sensor and a multi-sensor line.
7 cl, 10 dwg
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Authors
Dates
2019-05-06—Published
2018-07-05—Filed