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Preparation and Characterization of Polypyrrole Sensor

تحضير و توصيف محس من أغشية البولي بيرول

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 Publication date 2013
and research's language is العربية
 Created by Shamra Editor




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References used
Chitte HK, Bhat NV, Walunj VE, Shinde GN, Synthesis of polypyrrole using Ferric Chloride (FeCl3) as Oxidant Together with Some Dopants for Use in gas sensors. Journal of Sensor Technology, 2011; 1: 47-56
Chougule M, Pawar S, Godse P et al, Synthesis and characterization of polypyrrole (PPy) thin films. Soft Nanoscience Letters, 2011; 1: 6-10
Saville P, polypyrrole, Formation and Use. Technihal report,Defence Research and Development Canada, 2005:13-14
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الهدف من البحث: تصميم و تنفيذ منظومة توضيع بالترذيذ فوق الصوتي باستعمال جهاز ترذيذ منزلي لتوليد الرطوبة، بغية الحصول على حمُسات كيميائية بوليميرية ذات بنى نانوية بدءاً من مُلول البولي بيرول الناقل المصطنع بالأكسدة الكيميائية وفق نسب مولية مختلفة.
A chemical sensor was prepared by deposition of polypyrrole films by chemical polymerization of pyrrole at room temperature, using hexahydrate ferric chloride as oxidant, on a ceramic substrate placed on the bottom of the beaker (in-situ polymeriz ation). On the substrate two interdigitated metallic electrodes were priory deposited by screen printing, to reduce film resistance. These films were characterized by different methods namely FTIR, UV-Vis, XRD.
Quinaldine includes shifting hydrogenes which might be involved in important reactions as the condensation and Mannich reactions. Quinophtalone has been prepared through the reaction of quinaldine with phtalyic anhydride in the presence of alumini um chloride anhydrous Imines derivatives have been prepared through the reaction of Quinophtalone with hydroxideamine and phenyl hydrazine and then diazotion anyhydride has been done to the resulting compounds. The prepared compounds were characterized by ( H1NMR,IR, MS)
Three samples of alumina_zirconia mixed oxid AL2O3_Zr2O4(1;0.25;0.1) mole ratio based on oxides were prepared by sol-gel precipition method. The system AL2O3_Zr2O4 was obtained by mixing tow gel of alumina and zirconia precipited from aqueous solut ions of alumina nitrate and zirconium chlorid using ammonium hydroxide solution as precipited agent. The system after mixing was allwed to settle for 24 h. The resuling precipitate was filtered off and washed several times with deionized water and dried at 120°C for 24 h. The powdered oven-dried hydrous alumina_zirconia was immersed in ammonium sulfate solution(1) M for 24 h to incorporate sulfate ions. The resulting sample was dried at 120° C for 24 h, calcined at 550°C for 6 h. The textural properties were determined by terating of adsorption data of N2 at 77 K, and the results showed the changings in the textural properties.The TG_DTA analysis showed the thermal stable of the samples in a long rang of temperature. FTIR spectra showed that the sulfate ions were incorperated in the saples.
Some samples of alumina supporting with sulfate ions and molybdenium were prepared by impregnation method. Supported samples were calcinated at 550°C for 6h. Presence of sulfate ions and molybdenium lead to decreasing of the specific surface area o f alumina, and in the ease of molybdenium the decreasing value was higher. The total pore volume was decreased with the pore size was increased. XRD patterns showed that the incorporation of sulfate ions and molybdenium did not affect crystalin structure of alumina. FTIR spectra showed the bonding between sulfate ionsmolybdenium and alumina. The TG-DTA studies showed that the losses mass was decreased when the sulfate ions and molybdenium were incorporated, sulfate ions and molybdenium oxide decomposed at ~700°C and ~800°C respectively .
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