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Jiří Zima

Researcher at Charles University in Prague

Publications -  96
Citations -  1907

Jiří Zima is an academic researcher from Charles University in Prague. The author has contributed to research in topics: Differential pulse voltammetry & Polarography. The author has an hindex of 22, co-authored 96 publications receiving 1779 citations. Previous affiliations of Jiří Zima include Loughborough University.

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Carbon Paste Electrodes in Modern Electroanalysis

TL;DR: In this paper, the possibilities of carbon paste-based electrodes in electrochemical investigations and in modern electroanalysis of inorganic ions or molecules, organic substances, biologically important compounds, and pharmaceuticals are reviewed.
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Nontraditional Electrode Materials in Environmental Analysis of Biologically Active Organic Compounds

TL;DR: In this article, a review describes recent results regarding voltammetric and amperometric determination of submicromolar concentrations of various environmentally important biologically active organic substances using nontraditional types of electrodes either in batch analysis or in flow liquid systems.
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Recent Advances in Electroanalysis of Organic Compounds at Carbon Paste Electrodes

TL;DR: In this article, a review of electroanalysis of organic compounds with carbon paste-based electrodes, sensors, and detectors is discussed, focusing on environmental pollutants, pharmaceutical formulations and drugs, as well as other biologically active organic compounds.
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Polarography and Voltammetry at Mercury Electrodes

TL;DR: In this paper, the scope and limitations of modern polarographic and voltammetric techniques on mercury electrodes are discussed and many practical examples of their applications in practical analysis are given to demonstrate that even in the third millennium polarography at mercury electrodes can be very useful analytical tools, which in certain cases can successfully compete with modern spectroscopic and separation techniques.
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Determining the vapour pressures of plant volatiles from gas chromatographic retention data.

TL;DR: The proposed model compares favourably with existing correlations, while having an added advantage of providing a convenient tool for vapour pressure determination of chemically divergent chemicals.