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Electrodes sensors, chemically

Ulakhovich NA, Medyantseva EP, Budnikov G K (1993) Carbon paste electrodes as chemical sensors in voltammetric analysis. Zh Anal Khim 48 980-998. [Pg.145]

DURST AND BLUBAUGH Chemically Modified Electrode Sensors... [Pg.247]

Durst, R. A. "Chemically Modified Electrode Sensors for Biocomponents," Presented at the Fourth Scientific Session on Ion-Selective Electrodes, Matrafilred, Hungary, October 10, 1984. [Pg.255]

Plachrritsa, V.V, and Miura, N. (2005) Effects of different additives on the sensirrg properties of NiO electrode used for rrrixed-potential-type YSZ-based gas sensors. Chemical Sensors, 21 (Suppl. B). 94-6. [Pg.481]

Pungor has presented evidence that the establishment of an electrode potential is caused by charge separation, due to chemisorption of the primary ion (H ) from the solution phase onto the electrode surface, that is, a surface chemical reaction. Counter ions of the opposite charge accumulate in the solution phase, and this charge separation represents a potential. A similar mechanism applies to other ion-selective electrodes (below). [See E. Pungor, The New Theory of Ion-Selective Electrodes, Sensors, 1 (2001) 1-12 (this is an electronic journal www. mdpi.net/sensors). ... [Pg.387]

Moody, G. J., Thomas, J. D. R., Organic Sensor Materials in Entangled and Polymer-Bound Matrices for Ion-Selective Electrodes , in Chemical Sensors Edmonds, T. E. (ed.) Glasgow Blackie and Sons, 1988, pp. 75-116. [Pg.105]

M. KLEITZ, E. SIEBERT, Electrode reactions in potentiometric gas sensors . Chemical... [Pg.428]

Liu, Y, Yuan, R., et al. Direct electrochemistry of horseradish peroxidase immobilized on gold coUoid/cysteine/nafion-modified platinum disk electrode. Sensors and Actuators B Chemical, 15(1), 109-115 (2006). [Pg.418]

Carballo, R., V.C. DaH Orto, A. Lo Balbo, and I. Rezzano (2003). Determination of sulfite by flow injection analysis using poly[Ni-(protoporphyrin DC)] chemically modified electrode. Sensor Actuators B Chem. 88,155-161. [Pg.357]

See Buhimann P, Prelsch E, and Bakker E (1998) Carrier-based ion-selective electrodes and bulk optodes 2. lonophores applied in potentiometric and optical sensors. Chemical Reviews 98 1593 and references cited therein. [Pg.2353]

See also DNA Sequencing. Enzymes Enzyme-Based Electrodes. Forensic Sciences Blood Analysis. Immunoassays, Techniques Enzyme Immunoassays. Microelectrodes. Polarography Techniques Organic Applications. Purines, Pyrimidines, and Nucleotides. Sensors Chemically Modified Electrodes. Voltammetry Organic Compounds. [Pg.3457]

See also-. Ion-Selective Electrodes Overview. Process Analysis Sensors. Sensors Amperometric Oxygen Sensors Chemically Modified Electrodes Piezoelectric Resonators. [Pg.4360]

See also Atomic Absorption Spectrometry Principles and Instrumentation. Atomic Emission Spectrometry Inductively Coupled Plasma. Flow Injection Analysis Principles Instrumentation Detection Techniques Environmental and Agricultural Applications Clinical and Pharmaceutical Applications Industrial Applications. Microelectrodes. Sensors Chemically Modified Electrodes. Thin-Layer Chromatography Overview. Water Analysis Freshwater Seawater - Inorganic Compounds. [Pg.4949]


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