Biosensors: an IntroductionWiley-Teubner, 1996 - 212 pagine Biosensors: An Introduction begins by introducing the reader, systematically and comprehensively, to the basic features of biosensors, discussing the types of biological materials used and the ways in which they can be connected with a variety of transducers to create the complete biosensor. Performance characteristics of a wide range of biosensors are discussed, and details of the most important types of biosensor currently used are presented. A highly practical chapter containing details of a number of biosensor experiments for undergraduate and postgraduate students is included, while applications of biosensors across a broad range of fields, and consideration of the commercial techniques for manufacturing biosensors, are presented in the final chapter. Biosensors: An Introduction is an invaluable reference source for anyone working with biosensors, and a highly practical learning tool for those studying any aspect of the subject. Its unique combination of introductory and more advanced material provides the necessary bridge for all those wishing to become more involved in this expanding and fascinating field. |
Dall'interno del libro
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Pagina 55
... chloride electrode . Silver chloride has the advantage of being sparingly soluble in water . The half - cell reaction is AgCl + e ̄ = Ag + Cl- E = +0.22 V The electrode consists of a silver wire coated with silver chloride dipping into ...
... chloride electrode . Silver chloride has the advantage of being sparingly soluble in water . The half - cell reaction is AgCl + e ̄ = Ag + Cl- E = +0.22 V The electrode consists of a silver wire coated with silver chloride dipping into ...
Pagina 56
... chloride coating can easily be obtained by making the silver wire the anode in an electrochemical cell with a platinum cathode and a potassium chloride electrolyte and electrolysing for about 30 min with a positive potential of about ...
... chloride coating can easily be obtained by making the silver wire the anode in an electrochemical cell with a platinum cathode and a potassium chloride electrolyte and electrolysing for about 30 min with a positive potential of about ...
Pagina 62
... chloride and nitrite . Alternative ISAs of more complex composition will do so . Silver sulphate was used to precipitate out the chloride , but has now been replaced by a more complex but less expensive lead acetate mixture . Fluoride ...
... chloride and nitrite . Alternative ISAs of more complex composition will do so . Silver sulphate was used to precipitate out the chloride , but has now been replaced by a more complex but less expensive lead acetate mixture . Fluoride ...
Sommario
Introduction | 1 |
Biological Elements | 13 |
Immobilisation of Biological Component | 31 |
Copyright | |
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A. P. F. Turner ammonia amperometric analyte antibodies antigen assay biological component biomaterial biosensor based biosensors buffer catalyse catechol cell Chap Chapter Chem chemical chloride cholesterol concentration conducting covalent crystal cyclic voltammogram dehydrogenase determination developed device dopamine electrochemical enzyme equation ethanol example ferrocene fluorescence Fundamentals and Applications G. S. Wilson Eds gluconic acid glucose biosensor glucose oxidase H₂O H₂O₂ half-cell hydrogen peroxide immobilised immunoassays insulin ion-selective electrode ions Karube and G. S. logarithm luciferase luminol material measured mediator membrane method mode monitoring n₂ NAD+ NADH O₂ Open University Open University Press Optical fibres Oxford University Press oxidation oxygen oxygen electrode paracetamol permission of Oxford pH electrode phosphate piezoelectric polymer polypyrrole potential potentiometric Press from Hall range reaction reagent receptor Rechnitz redox reference electrode Reproduced by permission response sample selective sensitivity sensor shown in Figure solution substrate surface technique tissue transducer urea urease voltammetry wavelengths