Mesoporous anatase based opto-chemical sensor
Organic dyes immobilized nanocrystalline anatase matrix is synthesized by low-temperature sol-gel method for sensing analysis. It is determined that the thermally stable anatase phase has average crystallite size of 5 nm, low roughness 2 nm, average particle size 5.3 nm, specific surface area of 170...
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my.utm.881462020-12-14T23:09:29Z http://eprints.utm.my/id/eprint/88146/ Mesoporous anatase based opto-chemical sensor Islam, Shumaila Bakhtiar, Hazri Aziz, Madzlan Riaz, Saira Naseem, Shahzad QC Physics Organic dyes immobilized nanocrystalline anatase matrix is synthesized by low-temperature sol-gel method for sensing analysis. It is determined that the thermally stable anatase phase has average crystallite size of 5 nm, low roughness 2 nm, average particle size 5.3 nm, specific surface area of 170 m2g–1 and refractive index 2. However, after immobilization, smaller average crystallite size ∼3 nm, high roughness 9 nm, smaller average particle size 4.5 nm, larger surface area of 196 m2g–1 and low refractive index 1.8 is determined. The sensitivity 116 RI/pH at 428 nm over pH 1–12 is calculated. The average response time ∼0.3 s in pH 12 is observed. Elsevier Ltd 2019-09 Article PeerReviewed Islam, Shumaila and Bakhtiar, Hazri and Aziz, Madzlan and Riaz, Saira and Naseem, Shahzad (2019) Mesoporous anatase based opto-chemical sensor. Materials Science in Semiconductor Processing, 100 . pp. 236-244. ISSN 13698001 http://dx.doi.org/10.1016/j.mssp.2019.05.009 |
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QC Physics Islam, Shumaila Bakhtiar, Hazri Aziz, Madzlan Riaz, Saira Naseem, Shahzad Mesoporous anatase based opto-chemical sensor |
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Organic dyes immobilized nanocrystalline anatase matrix is synthesized by low-temperature sol-gel method for sensing analysis. It is determined that the thermally stable anatase phase has average crystallite size of 5 nm, low roughness 2 nm, average particle size 5.3 nm, specific surface area of 170 m2g–1 and refractive index 2. However, after immobilization, smaller average crystallite size ∼3 nm, high roughness 9 nm, smaller average particle size 4.5 nm, larger surface area of 196 m2g–1 and low refractive index 1.8 is determined. The sensitivity 116 RI/pH at 428 nm over pH 1–12 is calculated. The average response time ∼0.3 s in pH 12 is observed. |
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Article |
author |
Islam, Shumaila Bakhtiar, Hazri Aziz, Madzlan Riaz, Saira Naseem, Shahzad |
author_facet |
Islam, Shumaila Bakhtiar, Hazri Aziz, Madzlan Riaz, Saira Naseem, Shahzad |
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Islam, Shumaila |
title |
Mesoporous anatase based opto-chemical sensor |
title_short |
Mesoporous anatase based opto-chemical sensor |
title_full |
Mesoporous anatase based opto-chemical sensor |
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Mesoporous anatase based opto-chemical sensor |
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Mesoporous anatase based opto-chemical sensor |
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mesoporous anatase based opto-chemical sensor |
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Elsevier Ltd |
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2019 |
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http://eprints.utm.my/id/eprint/88146/ http://dx.doi.org/10.1016/j.mssp.2019.05.009 |
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