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Electrodes electroanalysis

E. Bakker, Hydrophobic membranes as liquid junction-free reference electrodes. Electroanalysis 11, 788-792 (1999). [Pg.133]

T. Zwickl, T. Sokalski, and E. Pretsch, Steady-state model calculations predicting the influence of key parameters on the lower detection limit and ruggedness of solvent polymeric membrane ion-selective electrodes. Electroanalysis 11, 673-680 (1999). [Pg.134]

X. Zhang, J. Wang, B. Ogorevc, and U.E. Spichiger, Glucose nanosensor based on Prussian-blue modified carbon-fiber cone nanoelectrode and an integrated reference electrode. Electroanalysis 11, 945-949 (1999). [Pg.460]

S. Milardovic, Z. Grabaric, V. Rumenjak, and M. Jukic, Rapid determination of oxalate by an ampero-metric oxalate oxidase-based electrode. Electroanalysis 12, 1051—1058 (2000). [Pg.461]

J.P. Li, T.Z. Peng, and Y.Q. Peng, A cholesterol biosensor based on entrapment of cholesterol oxidase in a silicic sol-gel matrix at a Prussian blue modified electrode. Electroanalysis 15, 1031—1037 (2003). [Pg.461]

J. Pei and X. Li, Amperometric glucose enzyme sensor prepared by immobilizing glucose oxidase on CuPtC16 chemically modified electrode. Electroanalysis 11, 1266-1272 (1999). [Pg.462]

J. Wang, G. Rivas, and M. Chicharro, Iridium-dispersed carbon paste enzyme electrodes. Electroanalysis 8, 434—137 (1995). [Pg.462]

Z. Wang, Y. Wang, and G. Luo, The electrocatalytic oxidation of thymine at (3-cyclodextrin incorporated carbon nanotube-coated electrode. Electroanalysis 15, 1129-1133 (2003). [Pg.520]

P. Yang, Q. Zhao, Z. Gu, and Q. Zhuang, The electrochemical behavior of hemoglobin on SWNTs/ DDAB film modified glassy carbon electrode. Electroanalysis 16, 97—100 (2004). [Pg.521]

M.D. Rubianes and G.A. Rivas, Enzymatic biosensors based on carbon nanotubes paste electrodes. Electroanalysis 17, 73—78 (2005). [Pg.522]

L. Rabinovich and O. Lev, Sol-gel derived composite ceramic carbon electrodes. Electroanalysis, 13, 265-275 (2001). [Pg.550]

Xu JZ, Zhu JJ, Wu Q, Hu Z, Chen HY (2003) An amperometric biosensor based on the coimmobilization of horseradish peroxidase and methylene blue on a carbon nanotubes modified electrode. Electroanalysis 15 219-224. [Pg.266]

Wang, R., Okajima, T., Kitamura, R, and Ohsaka, T., A novel amperometric O2 gas sensor based on supported room-temperature ionic liquid porous polyethylene membrane-coated electrodes, Electroanalysis, 16, 66-72, 2004. [Pg.135]

Domenech A, Domenech-Carbo MT, Osete L (2001) Identification of manganese(IV) centers in archaeological glass using micro-sample coatings attached to polymer film electrodes. Electroanalysis 13 927-935. [Pg.146]

Domenech A, Sanchez S, Domenech-Carbo MT, Gimeno JV, Bosch F, Yusa DJ, Sauri MC (2002) Electrochemical determination of the Fe(llI)/Fe(II) ratio in arcaheologi-cal ceramic materials using carbon paste and composite electrodes. Electroanalysis 14 685-696. [Pg.150]

J. Wang, E. Gonzalez-Romero and M. Ozsoz, Renewable alcohol biosensors based on alcohol-dehydrogenase/nicotinamide-adenine-dinucleotide graphite epoxy electrodes, Electroanalysis, 4 (1992) 539-544. [Pg.291]

S. Campuzano, M. Pedrero, F.J. Manuel de Villena and J.M. Pingarron, A lactulose bienzyme biosensor based on self-assembled monolayer modified electrodes, Electroanalysis, 16(17) (2004) 1385-1392. [Pg.294]

K.M. Millan, A.L. Spurmanis and S.K. Mikkelsen, Covalent immobilization of DNA onto glassy carbon electrodes, Electroanalysis, 4 (1992) 929-932. [Pg.463]

J. Wang, X. Cai, C. Jonsson and M. Balakrishnan, Adsorptive stripping potentiometry of DNA at electrochemically pretreated carbon paste electrodes, Electroanalysis, 8 (1996) 20-24. [Pg.464]

A.S. Kumar and J.M. Zen, Electrochemical investigation of glucose sensor fabricated at copper-plated screen-printed carbon electrodes, Electroanalysis, 14 (2002) 671-678. [Pg.544]

J.-M. Zen, D.-M. Tsai and A.S. Kumar, Flow injection analysis of ascorbic acid in real samples using a highly stable chemically modified screen-printed electrode, Electroanalysis, 15 (2003) 1171-1176. [Pg.547]

N. Kirsch, K.C. Honeychurch, J.P. Hart and M.J. Whitcombe, Voltammetric determination of urinary 1-hydroxypyrene using molecularly imprinted polymer-modified screen-printed carbon electrodes, Electroanalysis, 17 (2005) 571-578. [Pg.554]

J. Wang, S. Thongngamdee and A. Kumar, Highly stable voltammetric detection of nitroaromatic explosives in the presence of organic surfactants at a polyphenol-coated carbon electrode, Electroanalysis, 16 (2004) 1232-1235. [Pg.556]

J. Yan, X. Yang and E. Wang, Electrochemical detection of anions on an electrophoresis microchip with integrated silver electrode, Electroanalysis, 17 (2005) 1222-1226. [Pg.863]

Capelo, S., Mota, A.M. and Gongalves, M.L.S. (1995) Complexation of lead with humic matter by stripping voltammetry. Prevention of adsorption with Nafion-coated mercury film electrode. Electroanalysis, 7, 563-568. [Pg.221]

Morrison, G.M., Florence, T.M. and Stauber,J.L. (1990) The effects of complexing agents and surfactants on the deposition and stripping processes in differential pulse anodic stripping voltammetry of metals at the hanging mercury drop electrode. Electroanalysis (NY), 2, 9-14. [Pg.437]

Palecek, E. From polarography of DNA to microanalysis with nucleic acid-modified electrodes. Electroanalysis 1996, 8, 7-14. [Pg.9]

Imabayashi S, Kong Y, Watanabe M (2001) Amperometric biosensor for polyphenol based on horseradish peroxidase immobilized on gold electrodes. Electroanalysis 13 408—412... [Pg.148]

Svancara, I., Baldrianova, L., Tesarova, E., Hocevar, S. B., Elsuccary, S. A. A., Economou, A., Sotiropoulos, S., Ogorevc, B. and Vytras, K. (2006), Recent advances in anodic stripping voltammetry with bismuth-modified carbon paste electrodes. Electroanalysis, 18(2) 177-185. [Pg.96]

Spataru, N., Spatam, T. and Fujishima, A. (2005) Voltammetric determination of thiourea at conductive diamond electrodes. Electroanalysis 17, 800-805. [Pg.142]

Katz, E., and Willner, I. Thermal and photochemical control of an electrochemical process at an isomerizable spiropyran monolayer-modified Au-electrode. Electroanalysis 1995, 7, 417-419. [Pg.264]

Eernandez-Marcote, M.S.M. Mochon, M.C. Sanchez, J.C.J. Perez, A.G. Electrochemical reduction of prilocaine as its V-nitrosamine derivative at the mercury electrode. Electroanalysis 1998, 10, 492-496. [Pg.1501]

Badawy, S.S. Issa, Y.M. Tag-Eldin, A.S. Potentiometric determination of L-dopa, carbidopa, methyldopa, and aspartame using a new trinitrobenzenesulfonate selective electrode. Electroanalysis 1996, 8, 1060-1064. [Pg.1530]

Komsiyska, L. Tsakova, V. Ascorbic acid oxidation at nonmodified and copper-modified polyaniline and poly-ortho-methoxyaniline coated electrodes. Electroanalysis. 2006, 18, 807-813... [Pg.328]

Jonsson, G. and Gorton, L. (1989) An electrochemical sensor for hydrogen-peroxide based on peroxide adsorbed on a spectrographic graphite electrode. Electroanalysis, 1 (5), 465 468. [Pg.71]

The first volume of this Handbook contains brief reviews dealing with the general methodology of solid-state electrochemistry, with the major groups of solid electrolytes and mixed ionic-electronic conductors, and with selected applications for electrochemical cells. Attention is drawn in particular to the nanostructured solids, superionics, polymer and hybrid materials, insertion electrodes, electroanalysis and sensors. Further applications, and the variety of interfacial processes in solid-state electrochemical cells, will be examined in the second volume. [Pg.524]

Xiao F, Ruan CP, Zeng BZ et al (2008) Voltammetric determination of xanthine with a single-walled carbon nanotube-ionic liquid paste modified glassy carbon electrode. Electroanalysis 20 361-366... [Pg.430]

Zhao FQ, Liu LQ, Xiao F et al (2007) Sensitive voltammetric response of p-nitroamline on single-wall carbon nanotube-ionic liquid gel modified glassy carbon electrodes. Electroanalysis 19 1387-1393... [Pg.430]

Johansson G 1990 Amperometric amino acid electrodes Electroanalysis 2 517-23... [Pg.453]


See other pages where Electrodes electroanalysis is mentioned: [Pg.520]    [Pg.550]    [Pg.595]    [Pg.598]    [Pg.151]    [Pg.88]    [Pg.94]    [Pg.71]   
See also in sourсe #XX -- [ Pg.686 , Pg.693 , Pg.694 , Pg.695 , Pg.696 , Pg.699 ]




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Carbon paste electrode , electroanalysis

Electroanalysis

Electroanalysis, polymer-modified electrodes

Glassy carbon electrode electroanalysis

Screen-printed carbon electrodes electroanalysis

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