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ELECTROCHEMISTRY

Electrocatalytic Oxidation and Voltammetric Determination of Hydrazine in Industrial Boiler Feed Water Using a Cobalt Phthalocyanine-modified Electrode

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Pages 1010-1021 | Received 26 Nov 2007, Accepted 12 Jan 2008, Published online: 05 Jun 2008

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Wen Ding, Min Wu, Meiling Liang, Henmei Ni & Ying Li. (2015) Sensitive Hydrazine Electrochemical Biosensor Based on a Porous Chitosan–Carbon Nanofiber Nanocomposite Modified Electrode. Analytical Letters 48:10, pages 1551-1569.
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José H. Zagal, Sophie Griveau, J. Francisco Silva, Tebello Nyokong & Fethi Bedioui. (2010) Metallophthalocyanine-based molecular materials as catalysts for electrochemical reactions. Coordination Chemistry Reviews 254:23-24, pages 2755-2791.
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Ivan Švancara, Alain Walcarius, Kurt Kalcher & Karel Vytřas. (2009) Carbon paste electrodes in the new millennium. Open Chemistry 7:4, pages 598-656.
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