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Original Articles

NANO-GOLD MODIFIED GLASSY CARBON ELECTRODE FOR SELECTIVE DETERMINATION OF EPINEPHRINE IN THE PRESENCE OF ASCORBIC ACID

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Pages 1907-1918 | Received 26 Feb 2002, Accepted 10 May 2002, Published online: 02 Feb 2007

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J. Manso, L. Agüí, P. Yáñez‐Sedeño & J. M. Pingarrón. (2004) Development and Characterization of Colloidal Gold‐Cysteamine‐Carbon Paste Electrodes. Analytical Letters 37:5, pages 887-902.
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Articles from other publishers (14)

Olga Vajdle, Sanja Šekuljica, Valéria Guzsvány, László Nagy, Zoltán Kónya, Milka Avramov Ivić, Dušan Mijin, Slobodan Petrović & Jasmina Anojčić. (2020) Use of carbon paste electrode and modified by gold nanoparticles for selected macrolide antibiotics determination as standard and in pharmaceutical preparations. Journal of Electroanalytical Chemistry 873, pages 114324.
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Adam Gorczyński, Maciej Kubicki, Klaudia Szymkowiak, Teresa Łuczak & Violetta Patroniak. (2016) Utilization of a new gold/Schiff-base iron( iii ) complex composite as a highly sensitive voltammetric sensor for determination of epinephrine in the presence of ascorbic acid . RSC Advances 6:104, pages 101888-101899.
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Teresa Łuczak, Maria Bełtowska-Brzezinska & Rudolf Holze. (2014) Electrocatalytic activity of gold modified with gold nanoparticles and self-assembled layers of meso-2,3-dimercaptosuccinic acid for oxidation of epinephrine in the presence of ascorbic and uric acids. Electrochimica Acta 123, pages 135-143.
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Teresa Łuczak & Maria Bełtowska-Brzezinska. (2013) Quantitative determination of biogenic amine at gold in the presence of secondary amine during electrochemical oxidation in physiological solution containing ascorbic and uric acids. Electrochimica Acta 90, pages 634-640.
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Aziz Paşahan, Süleyman Köytepe, Mahmut Alper Cengiz & Turgay Seçkin. (2013) Synthesis and characterization of polyurethanes containing glucose for selective determination of epinephrine in the presence of a high concentration of ascorbic acid. Polymer International 62:2, pages 246-250.
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S. M. Ghoreishi, M. Behpour, N. Jafari & M. Golestaneh. (2012) Electrochemical Determination of Tyrosine in the Presence of Dopamine and Uric Acid at the Surface of Gold Nanoparticles Modified Carbon Paste Electrode. Journal of the Chinese Chemical Society 59:8, pages 1015-1020.
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Krishnendu Saha, Sarit S. Agasti, Chaekyu Kim, Xiaoning Li & Vincent M. Rotello. (2012) Gold Nanoparticles in Chemical and Biological Sensing. Chemical Reviews 112:5, pages 2739-2779.
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Tsung-Hsuan Tsai, Soundappan Thiagarajan, Shen-Ming Chen & Ching-Yi Cheng. (2012) Ionic liquid assisted synthesis of nano Pd–Au particles and application for the detection of epinephrine, dopamine and uric acid. Thin Solid Films 520:7, pages 3054-3059.
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Teresa Łuczak. (2011) Gold Electrodes Modified with Self-Assembled Layers Made of Sulphur Compounds and Gold Nanoparticles Used for Selective Electrocatalytic Oxidation of Catecholamine in the Presence of Interfering Ascorbic and Uric Acids. International Journal of Electrochemistry 2011, pages 1-10.
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Teresa Åuczak. (2009) Epinephrine Oxidation in the Presence of Interfering Molecules on Gold and Gold Electrodes modified with Gold Nanoparticles and Thiodipropionic Acid in Aqueous Solution. A Comparative Study. Electroanalysis 21:23, pages 2557-2562.
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Teresa Łuczak. (2009) Comparison of electrochemical oxidation of epinephrine in the presence of interfering ascorbic and uric acids on gold electrodes modified with S-functionalized compounds and gold nanoparticles. Electrochimica Acta 54:24, pages 5863-5870.
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L. G. Shaidarova & G. K. Budnikov. (2008) Chemically modified electrodes based on noble metals, polymer films, or their composites in organic voltammetry. Journal of Analytical Chemistry 63:10, pages 922-942.
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V. Carralero, A. González‐Cortés, P. Yáñez‐Sedeño & J. M. Pingarrón. (2005) Pulsed Amperometric Detection of Histamine at Glassy Carbon Electrodes Modified with Gold Nanoparticles. Electroanalysis 17:4, pages 289-297.
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Liping Lu & Xiangqin Lin. (2004) Glassy Carbon Electrode Modified with Gold Nanoparticles and DNA for the Simultaneous Determination of Uric Acid and Norepinephrine under Coexistence of Ascorbic Acid. Analytical Sciences 20:3, pages 527-530.
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