Chemical Sensors for Hostile Environments (eBook, PDF)
Redaktion: Kale, Girish M.; Liu, M.; Akbar, S. A.
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Chemical Sensors for Hostile Environments (eBook, PDF)
Redaktion: Kale, Girish M.; Liu, M.; Akbar, S. A.
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This volume presents information on the unique topic of chemical sensors. It focuses on the materials, manufacturing, theory and application of sensors. It is a resource that researchers, students, and those involved in the the design and manufacturing of ceramics will find of critical importance.
Proceedings of the symposium held at the 103rd Annual Meeting of The American Ceramic Society, April 22-25, 2001, in Indiana; Ceramic Transactions, Volume 130.
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This volume presents information on the unique topic of chemical sensors. It focuses on the materials, manufacturing, theory and application of sensors. It is a resource that researchers, students, and those involved in the the design and manufacturing of ceramics will find of critical importance.
Proceedings of the symposium held at the 103rd Annual Meeting of The American Ceramic Society, April 22-25, 2001, in Indiana; Ceramic Transactions, Volume 130.
Proceedings of the symposium held at the 103rd Annual Meeting of The American Ceramic Society, April 22-25, 2001, in Indiana; Ceramic Transactions, Volume 130.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in D ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Wiley
- Erscheinungstermin: 28. März 2012
- Englisch
- ISBN-13: 9781118371053
- Artikelnr.: 38257634
- Verlag: Wiley
- Erscheinungstermin: 28. März 2012
- Englisch
- ISBN-13: 9781118371053
- Artikelnr.: 38257634
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Girish M. Kale is the editor of Chemical Sensors for Hostile Environments, published by Wiley. S. A. Akbar is the editor of Chemical Sensors for Hostile Environments, published by Wiley. M. Liu is the editor of Chemical Sensors for Hostile Environments, published by Wiley.
Solid-State Electrochemical Sensors for Automotive Applications (R.
Mukundan, E.L. Brosha and F.H. Garzon).
Zirconia-Based Potentiometric NOx Sensor Utilizing Pt and Au Electrodes
(D.J. Kubinski, J.H. Visser, R.E. Soltis, M.H. Parsons, K.E. Nietering and
S.G. Ejakov).
Packaging Planar Exhaust Sensors for Hostile Exhaust Environments (C.S.
Nelson).
Importance of Gas Diffusion in Semiconductor Gas Sensors (N. Yamazoe, G.
Sakai and N. Matsunaga).
Durability of Thick-Film Ceramic Gas Sensors (A. Merhaba, S. Akbar, B.
Feng, G. Newaz, L. Riester and P. Blau).
Preparation and Characterization of Indium-Doped Calcium Zirconate for the
Electrolyte in Hydrogen Sensors for Use in Molten Aluminum (A.H. Setiawan
and J.W. Fergus).
Antimony Sensors for Molten Lead Using K-ß-Al2O3 Solid Electrolytes (R.
Kurchania and G.M. Kale).
Preparation and Characterization of Iron Oxide-Zirconia Nanopowder for Its
Use as an Ethanol Sensor Material (C.V.G. Reddy, S.A. Akbar, W. Cao, O.K.
Tan and W. Zhu).
Synthesis and Characterization of 2-3 Spinels as Material for Methane
Sensors (S. Poomiapiradee, R.M.D. Brydson and G.M. Kale).
Ammonia and Alcohol Gas Sensors Using Tungsten Oxide (M. Sriyudthsak, S.
Udomratananon and S. Supothina).
Low-Temperature Gas Sensing Using Laser Activation (M. Sriyudthsak and V.
Rungsaiwatana).
Synthesis of Gallium Oxide Hydroxide Crystals in Aqueous Solutions with or
without Urea and Their Calcination Behavior (A.C. Tas, P.J. Majewski and F.
Aldinger).
Mukundan, E.L. Brosha and F.H. Garzon).
Zirconia-Based Potentiometric NOx Sensor Utilizing Pt and Au Electrodes
(D.J. Kubinski, J.H. Visser, R.E. Soltis, M.H. Parsons, K.E. Nietering and
S.G. Ejakov).
Packaging Planar Exhaust Sensors for Hostile Exhaust Environments (C.S.
Nelson).
Importance of Gas Diffusion in Semiconductor Gas Sensors (N. Yamazoe, G.
Sakai and N. Matsunaga).
Durability of Thick-Film Ceramic Gas Sensors (A. Merhaba, S. Akbar, B.
Feng, G. Newaz, L. Riester and P. Blau).
Preparation and Characterization of Indium-Doped Calcium Zirconate for the
Electrolyte in Hydrogen Sensors for Use in Molten Aluminum (A.H. Setiawan
and J.W. Fergus).
Antimony Sensors for Molten Lead Using K-ß-Al2O3 Solid Electrolytes (R.
Kurchania and G.M. Kale).
Preparation and Characterization of Iron Oxide-Zirconia Nanopowder for Its
Use as an Ethanol Sensor Material (C.V.G. Reddy, S.A. Akbar, W. Cao, O.K.
Tan and W. Zhu).
Synthesis and Characterization of 2-3 Spinels as Material for Methane
Sensors (S. Poomiapiradee, R.M.D. Brydson and G.M. Kale).
Ammonia and Alcohol Gas Sensors Using Tungsten Oxide (M. Sriyudthsak, S.
Udomratananon and S. Supothina).
Low-Temperature Gas Sensing Using Laser Activation (M. Sriyudthsak and V.
Rungsaiwatana).
Synthesis of Gallium Oxide Hydroxide Crystals in Aqueous Solutions with or
without Urea and Their Calcination Behavior (A.C. Tas, P.J. Majewski and F.
Aldinger).
Solid-State Electrochemical Sensors for Automotive Applications (R.
Mukundan, E.L. Brosha and F.H. Garzon).
Zirconia-Based Potentiometric NOx Sensor Utilizing Pt and Au Electrodes
(D.J. Kubinski, J.H. Visser, R.E. Soltis, M.H. Parsons, K.E. Nietering and
S.G. Ejakov).
Packaging Planar Exhaust Sensors for Hostile Exhaust Environments (C.S.
Nelson).
Importance of Gas Diffusion in Semiconductor Gas Sensors (N. Yamazoe, G.
Sakai and N. Matsunaga).
Durability of Thick-Film Ceramic Gas Sensors (A. Merhaba, S. Akbar, B.
Feng, G. Newaz, L. Riester and P. Blau).
Preparation and Characterization of Indium-Doped Calcium Zirconate for the
Electrolyte in Hydrogen Sensors for Use in Molten Aluminum (A.H. Setiawan
and J.W. Fergus).
Antimony Sensors for Molten Lead Using K-ß-Al2O3 Solid Electrolytes (R.
Kurchania and G.M. Kale).
Preparation and Characterization of Iron Oxide-Zirconia Nanopowder for Its
Use as an Ethanol Sensor Material (C.V.G. Reddy, S.A. Akbar, W. Cao, O.K.
Tan and W. Zhu).
Synthesis and Characterization of 2-3 Spinels as Material for Methane
Sensors (S. Poomiapiradee, R.M.D. Brydson and G.M. Kale).
Ammonia and Alcohol Gas Sensors Using Tungsten Oxide (M. Sriyudthsak, S.
Udomratananon and S. Supothina).
Low-Temperature Gas Sensing Using Laser Activation (M. Sriyudthsak and V.
Rungsaiwatana).
Synthesis of Gallium Oxide Hydroxide Crystals in Aqueous Solutions with or
without Urea and Their Calcination Behavior (A.C. Tas, P.J. Majewski and F.
Aldinger).
Mukundan, E.L. Brosha and F.H. Garzon).
Zirconia-Based Potentiometric NOx Sensor Utilizing Pt and Au Electrodes
(D.J. Kubinski, J.H. Visser, R.E. Soltis, M.H. Parsons, K.E. Nietering and
S.G. Ejakov).
Packaging Planar Exhaust Sensors for Hostile Exhaust Environments (C.S.
Nelson).
Importance of Gas Diffusion in Semiconductor Gas Sensors (N. Yamazoe, G.
Sakai and N. Matsunaga).
Durability of Thick-Film Ceramic Gas Sensors (A. Merhaba, S. Akbar, B.
Feng, G. Newaz, L. Riester and P. Blau).
Preparation and Characterization of Indium-Doped Calcium Zirconate for the
Electrolyte in Hydrogen Sensors for Use in Molten Aluminum (A.H. Setiawan
and J.W. Fergus).
Antimony Sensors for Molten Lead Using K-ß-Al2O3 Solid Electrolytes (R.
Kurchania and G.M. Kale).
Preparation and Characterization of Iron Oxide-Zirconia Nanopowder for Its
Use as an Ethanol Sensor Material (C.V.G. Reddy, S.A. Akbar, W. Cao, O.K.
Tan and W. Zhu).
Synthesis and Characterization of 2-3 Spinels as Material for Methane
Sensors (S. Poomiapiradee, R.M.D. Brydson and G.M. Kale).
Ammonia and Alcohol Gas Sensors Using Tungsten Oxide (M. Sriyudthsak, S.
Udomratananon and S. Supothina).
Low-Temperature Gas Sensing Using Laser Activation (M. Sriyudthsak and V.
Rungsaiwatana).
Synthesis of Gallium Oxide Hydroxide Crystals in Aqueous Solutions with or
without Urea and Their Calcination Behavior (A.C. Tas, P.J. Majewski and F.
Aldinger).