Synthesis and Characterisation of Oxide materials
| AUTHOR | Ayeshamariam a. |
| PUBLISHER | LAP Lambert Academic Publishing (10/01/2014) |
| PRODUCT TYPE | Paperback (Paperback) |
Description
This study helps to new researchers to learn about oxide semiconducting materials and its some properties, the doping of these two materials gave Indium tin oxide materials which has plenty of optoelectronic applications.Indium tin oxide (In2O3: Sn) is an n-type semiconducting material with wide band gap. With oxygen deficiency they become conducting whereas in stoichiometric condition insulators. The resistance variation when exposed to gaseous atmosphere plays crucial role in gas sensing applications of these materials. Gas sensing materials should have large surface area so that contacting area between the grains and gaseous molecules will be increased manifold, which will enhance the sensitivity and selectivity of sensors. In2O3, SnO2 and In2O3: Sn have been used in powder, thick film and thin film form as gas sensing material out of which powder based sensing elements provide a single step way of making low cost sensors. For these purpose powders of these semiconductor oxides are to be prepared with nano grains having large specific surface are
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Product Format
Product Details
ISBN-13:
9783659610127
ISBN-10:
3659610127
Binding:
Paperback or Softback (Trade Paperback (Us))
Content Language:
English
More Product Details
Page Count:
52
Carton Quantity:
136
Product Dimensions:
6.00 x 0.12 x 9.00 inches
Weight:
0.20 pound(s)
Country of Origin:
US
Subject Information
BISAC Categories
Science | Chemistry - Physical & Theoretical
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publisher marketing
This study helps to new researchers to learn about oxide semiconducting materials and its some properties, the doping of these two materials gave Indium tin oxide materials which has plenty of optoelectronic applications.Indium tin oxide (In2O3: Sn) is an n-type semiconducting material with wide band gap. With oxygen deficiency they become conducting whereas in stoichiometric condition insulators. The resistance variation when exposed to gaseous atmosphere plays crucial role in gas sensing applications of these materials. Gas sensing materials should have large surface area so that contacting area between the grains and gaseous molecules will be increased manifold, which will enhance the sensitivity and selectivity of sensors. In2O3, SnO2 and In2O3: Sn have been used in powder, thick film and thin film form as gas sensing material out of which powder based sensing elements provide a single step way of making low cost sensors. For these purpose powders of these semiconductor oxides are to be prepared with nano grains having large specific surface are
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