By Rene Lalauze(auth.), Dominique Placko(eds.)
Basic simple proof and theoretical instruments for the translation and version improvement of solid-gas interactions are first provided during this paintings. Chemical, actual and electrochemical elements are awarded from a phenomenological, thermodynamic and kinetic standpoint. The theoretical facets of electric homes at the floor of an excellent also are coated to supply better accessibility for people with a physico-chemical history. the second one half is dedicated to the improvement of units for gasoline detection in a method strategy. tools for experimental investigations referring to solid-gas interactions are first defined. effects are then offered so that it will help the contribution made by way of huge metal components to the digital approaches linked to solid-gas interactions.Content:
Chapter 1 Adsorption Phenomena (pages 1–27):
Chapter 2 constitution of Solids: Physico?chemical facets (pages 29–38):
Chapter three Gas?Solid Interactions: digital facets (pages 39–68):
Chapter four Interfacial Thermodynamic Equilibrium reports (pages 69–108):
Chapter five version improvement for Interfacial Phenomena (pages 109–136):
Chapter 6 gear for Experimental experiences: Examples of purposes (pages 137–213):
Chapter 7 fabric Elaboration (pages 215–275):
Chapter eight effect of the steel elements at the electric reaction of the Sensors (pages 277–308):
Chapter nine improvement and Use of alternative gasoline Sensors (pages 309–359):
Chapter 10 versions and Interpretation of Experimental effects (pages 361–430):
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Extra info for Physical Chemistry of Solid-Gas Interfaces: Concepts and Methodology for Gas Sensor Development
Example text
HAMMOU, M. KLEITZ, E. SIEBERG, J-L. SOUQUET, Electrochimie des solides, Collection Grenoble Sciences, 1994. 2. M. SOUSTELLE, Modélisation macroscopique des transformations physico-chimiques, Masson, Paris, 1990. 3. A. , 1974. Physical Chemistry of Solid-Gas Interfaces: Concepts and Methodology for Gas Sensor Development Rene Lalauze Copyright 02008, ISTE Ltd. 1. Introduction Before going into a description of electron transfers between a gas and a solid, it is necessary to present some general physical or physico-chemical properties of the constituents, that is to say gases and solids.
SIEBERG, J-L. SOUQUET, Electrochimie des solides, Collection Grenoble Sciences, 1994. 2. M. SOUSTELLE, Modélisation macroscopique des transformations physico-chimiques, Masson, Paris, 1990. 3. A. , 1974. Physical Chemistry of Solid-Gas Interfaces: Concepts and Methodology for Gas Sensor Development Rene Lalauze Copyright 02008, ISTE Ltd. 1. Introduction Before going into a description of electron transfers between a gas and a solid, it is necessary to present some general physical or physico-chemical properties of the constituents, that is to say gases and solids.
In our case, there is only one particle and we hope to achieve a near-zero value for the probability on the entire space domain, except a very small area around the particle. This result cannot be obtained mathematically unless the Mg function wave vectors are slightly different, which boils down to an interference problem. As an example, we can easily deal with the case of the function: Mg M 0 sin> k 0 g'k x @ The wave vector kg varies from: k0 = ' k to k0 + N'k when g ranges from 1 to N. 3a.