Chemical sensor technology. Vol. 4 /
This volume is the fourth in a series of annual reviews on progress in the research and technology, both basic and applied, of chemical sensors. New principles, new devices, and the detailed mechanism of various chemical sensors are described. Chemical sensors continue to grow rapidly in importance...
Clasificación: | Libro Electrónico |
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Otros Autores: | |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
Tokyo : Amsterdam :
Kodansha ; Elsevier,
1992.
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Colección: | Chemical sensor technology ;
v. 4. |
Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Front Cover; Chemical Sensor Technology; Copyright Page; Editorial Board; List of Contributors; Preface; Table of Contents; Chapter 1. Development of the TGS Gas Sensor; 1. Introduction; 2. Invention of the Gas Sensor; 3. Establishment of Figaro Engineering Inc; References; Chapter 2. Some Basic Aspects of Semiconductor Gas Sensors; 1. Introduction; 2. Microstructure of SnO2 Particles; 3. Influence of Microstructure on Gas Sensitivity; 4. Modifications of SnO2 Surface; 5. Concluding Remarks; Acknowledgments; References; Chapter 3. Silicon Technologies for Sensor Fabrication; 1. Introduction.
- 2. Basic Processing Steps3. Silicon on Insulator Technology; 4. Silicon Micromechanics; 5. Thin Film Chemical Sensors on Silicon Substrates; 6. Chemical Sensors Based on Silicon Devices; 7. Micromachined Chemical Sensors; 8. Conclusion; References; Chapter 4. Characterization of Oxygen Adsorbates on Semiconductive Oxides; 1. Introduction; 2. Oxygen Species Adsorbed on Oxides; 3. Adsorption States of Oxygen Species on Oxides; 4. Reactivity of Oxygen Species Adsorbed on Metal Oxides; 5. Conclusions; References; Chapter 5. Miniaturization of Catalytic Combustion Sensors; 1. Introduction.
- 2. Conventional Catalytic Combustion Sensors3. Improvement for Selectivce CO Detection; 4. Development of Low-power Sensors; 5. Conclusion; References; Chapter 6. Solid Electrolyte Potentiometric Oxygen Gas Sensors; 1. Introduction; 2. Operating Principles; 3. Precision of Oxygen Partial Pressure Determination; 4. Accuracy and Reliability; 5. Response Time; 6. Materials; 7. Conclusions; References; Chapter 7. NASICON: a Sensitive Membrane for Ion Analysis; 1. Introduction; 2. Structure and Properties of NASICON; 3. NASICON Preparation Processes; 4. ISE Improvements with NASICON; 5. Conclusion.
- 5. The Measurement of the Metabolism of Living Cells6. Conclusion; References; Chapter 10. Enzyme Sensor Utilizing an Immobilized Mediator; 1. Introduction; 2. The Use of Conducting Support; 3. The Use of Water-soluble Macromolecular Mediators; 4. Future Prospects; References; Chapter 11. Piezoelectric Biosensors; 1. Introduction; 2. Principles of Piezoelectric Acoustic Sensors; 3. Bioactive Surfaces; 4. Experimental Piezoelectric Biosensors; 5. Future Trends; References; Chapter 12. Sensitization of Dielectric Surfaces by Chemical Grafting Application to ISFETs and ENFETs; 1. Introduction.