0000000000441130

AUTHOR

Valdis Mizers

0000-0001-9666-5549

showing 2 related works from this author

Glyphosate Sensor Based on Nanostructured Water-Gated CuO Field-Effect Transistor

2022

This research presents a comparative analysis of water-gated thin film transistors based on a copper oxide (CuO) semiconductor in the form of a smooth film and a nanostructured surface. A smooth CuO film was deposited through reactive magnetron sputtering followed by annealing in atmosphere at a temperature of 280 (Formula presented.) C. Copper oxide nanostructures were obtained by hydrothermal synthesis on a preliminary magnetron sputtered 2 nm thick CuO precursor followed by annealing at 280 (Formula presented.) C. An X-ray diffraction (XRD) analysis of the samples revealed the presence of a tenorite (CuO) phase with a predominant orientation of (002). Scanning electron microscopy (SEM) a…

glyphosatenanostructures:NATURAL SCIENCES::Physics [Research Subject Categories]thin-film transistorElectrical and Electronic Engineeringwater-gated field effect transistorBiochemistryInstrumentationcopper oxideAtomic and Molecular Physics and OpticsAnalytical ChemistrySensors
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A non-enzymatic electrochemical hydrogen peroxide sensor based on copper oxide nanostructures

2022

This work was supported by ERDF project No. 1.1.1.2/16/I/ 001, research application number 1.1.1.2/VIAA/4/20/743 "Development of nanomaterial-based electrochemical sensor for detection of hydrogen peroxide". Institute of Solid State Physics, University of Latvia as the Center of Excellence has received fund ing from the European Union’s Horizon 2020 Framework Programme H2020-WIDESPREAD-01-2016-2017 TeamingPhase2 under grant agree ment No. 739508, project CAMART2.

nanostructures:NATURAL SCIENCES [Research Subject Categories]General Physics and Astronomyelectrochemical sensorGeneral Materials Sciencehydrogen peroxideElectrical and Electronic Engineeringcopper oxide
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