Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan

Oxygen sensing properties of REBa2Cu3O7-d-based (RE123, RE = Er and Dy) ceramics utilizing the hot spot phenomenon have been investigated. Although shorter rods of around 12 mm are more practical for industrial use compared to previously reported rods longer than 30 mm, their oxygen sensing properti...

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Main Author: Hassan, Misbah
Format: Book Section
Language:en
Published: Institute of Graduate Studies, UiTM 2012
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Online Access:https://ir.uitm.edu.my/id/eprint/19082/1/ABS_MISBAH%20HASSAN%20TDRA%20VOL%201%20IGS%2012.pdf
https://ir.uitm.edu.my/id/eprint/19082/
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author Hassan, Misbah
author_facet Hassan, Misbah
author_sort Hassan, Misbah
building Tun Abdul Razak Library
collection Institutional Repository
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
continent Asia
country Malaysia
description Oxygen sensing properties of REBa2Cu3O7-d-based (RE123, RE = Er and Dy) ceramics utilizing the hot spot phenomenon have been investigated. Although shorter rods of around 12 mm are more practical for industrial use compared to previously reported rods longer than 30 mm, their oxygen sensing properties have not been previously reported. Bulk 123 materials were synthesized using the conventional solid-state method and fabricated into short rods of around 12-mm length with cross sectional area of 0.65 mm ´ 0.65 mm. In the first part of this study, influence of hot-spot temperature in the range of 160 °C to 810 °C on oxygen sensing behavior of Er123 rods was studied. Simultaneous measurements of hot-spot temperature and output current response in different oxygen partial pressures between 1 % and 100 % with hot-spots operating at temperatures as low as 660 °C in 1 % oxygen partial pressure produced good sensor current stability as well as repeatability. Response time for oxygen sensing was observed to decrease with increasing hot-spot temperature, with minimum value of 0.50 s recorded at 695 °C in 1 % oxygen partial pressure.
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publisher Institute of Graduate Studies, UiTM
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spelling my.uitm.ir-190822018-06-08T03:07:47Z https://ir.uitm.edu.my/id/eprint/19082/ Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan Hassan, Misbah Malaysia Oxygen sensing properties of REBa2Cu3O7-d-based (RE123, RE = Er and Dy) ceramics utilizing the hot spot phenomenon have been investigated. Although shorter rods of around 12 mm are more practical for industrial use compared to previously reported rods longer than 30 mm, their oxygen sensing properties have not been previously reported. Bulk 123 materials were synthesized using the conventional solid-state method and fabricated into short rods of around 12-mm length with cross sectional area of 0.65 mm ´ 0.65 mm. In the first part of this study, influence of hot-spot temperature in the range of 160 °C to 810 °C on oxygen sensing behavior of Er123 rods was studied. Simultaneous measurements of hot-spot temperature and output current response in different oxygen partial pressures between 1 % and 100 % with hot-spots operating at temperatures as low as 660 °C in 1 % oxygen partial pressure produced good sensor current stability as well as repeatability. Response time for oxygen sensing was observed to decrease with increasing hot-spot temperature, with minimum value of 0.50 s recorded at 695 °C in 1 % oxygen partial pressure. Institute of Graduate Studies, UiTM 2012 Book Section PeerReviewed text en https://ir.uitm.edu.my/id/eprint/19082/1/ABS_MISBAH%20HASSAN%20TDRA%20VOL%201%20IGS%2012.pdf Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan. (2012) In: The Doctoral Research Abstracts. IPSis Biannual Publication, 1 (1). Institute of Graduate Studies, UiTM, Shah Alam.
spellingShingle Malaysia
Hassan, Misbah
Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan
title Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan
title_full Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan
title_fullStr Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan
title_full_unstemmed Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan
title_short Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan
title_sort effects of hot-spot temperature, microstructure and baa12o4 addition on oxygen sensing properties of reba2cu3o7-δ(re=er, dy) ceramic rods / misbah hassan
topic Malaysia
url https://ir.uitm.edu.my/id/eprint/19082/1/ABS_MISBAH%20HASSAN%20TDRA%20VOL%201%20IGS%2012.pdf
https://ir.uitm.edu.my/id/eprint/19082/
url_provider http://ir.uitm.edu.my/