Crack-free high surface area silica-titania nanocomposite coating as opto-chemical sensor device

This work highlights the versatility of sol-gel-derived nanocomposite silica-titania host matrix along with functionalized organic dyes i.e., bromophenol blue (C19H10Br4O5S), phenol red (C19H14O5S), cresol red (C21H17NaO5S) and phenolphthalein (C20H14O4) encapsulation with surfactant CTAB for pH sen...

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Main Authors: Islam, Shumaila, Bakhtiar, Hazri, Bidin, Noriah, Salim, Ali Aqeel, Riaz, Saira, Krishnan, Ganesan, Naseem, Shahzad
Format: Article
Published: Elsevier B. V. 2018
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Online Access:http://eprints.utm.my/id/eprint/86721/
http://dx.doi.org/10.1016/j.sna.2017.12.063
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.867212020-09-30T09:04:58Z http://eprints.utm.my/id/eprint/86721/ Crack-free high surface area silica-titania nanocomposite coating as opto-chemical sensor device Islam, Shumaila Bakhtiar, Hazri Bidin, Noriah Salim, Ali Aqeel Riaz, Saira Krishnan, Ganesan Naseem, Shahzad QD Chemistry This work highlights the versatility of sol-gel-derived nanocomposite silica-titania host matrix along with functionalized organic dyes i.e., bromophenol blue (C19H10Br4O5S), phenol red (C19H14O5S), cresol red (C21H17NaO5S) and phenolphthalein (C20H14O4) encapsulation with surfactant CTAB for pH sensing. The synthesized matrices before and after heat treatment (at 150 °C and 250 °C) are analyzed for chemical and physical uniformity; observed as stable, homogeneous, low surface roughness and with functionalized nano-pore surfaces. Particle size distributions in the range of 2.28 nm, 2.73 nm and 2.54 nm are established. Surface analysis shows that the nanoparticles are uniformly distributed on the surface of the mesoporous channel systems with high surface area 400 m2/g, and highly accessible pore system which has more capability to sense the broad pH range. The films show good optical qualities in the visible region with tunable refractive indices 1.57, 1.52-and 1.56. The response of the prepared sensor even shows stability towards higher pH value 12 and has linear relationship with correlation coefficient R2 ∼0.9341. The sensitivity of the proposed pH sensor is observed to be 0.614 mV/pH. Elsevier B. V. 2018-02 Article PeerReviewed Islam, Shumaila and Bakhtiar, Hazri and Bidin, Noriah and Salim, Ali Aqeel and Riaz, Saira and Krishnan, Ganesan and Naseem, Shahzad (2018) Crack-free high surface area silica-titania nanocomposite coating as opto-chemical sensor device. Sensors and Actuators, A: Physical, 270 . pp. 153-161. ISSN 0924-4247 http://dx.doi.org/10.1016/j.sna.2017.12.063
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QD Chemistry
spellingShingle QD Chemistry
Islam, Shumaila
Bakhtiar, Hazri
Bidin, Noriah
Salim, Ali Aqeel
Riaz, Saira
Krishnan, Ganesan
Naseem, Shahzad
Crack-free high surface area silica-titania nanocomposite coating as opto-chemical sensor device
description This work highlights the versatility of sol-gel-derived nanocomposite silica-titania host matrix along with functionalized organic dyes i.e., bromophenol blue (C19H10Br4O5S), phenol red (C19H14O5S), cresol red (C21H17NaO5S) and phenolphthalein (C20H14O4) encapsulation with surfactant CTAB for pH sensing. The synthesized matrices before and after heat treatment (at 150 °C and 250 °C) are analyzed for chemical and physical uniformity; observed as stable, homogeneous, low surface roughness and with functionalized nano-pore surfaces. Particle size distributions in the range of 2.28 nm, 2.73 nm and 2.54 nm are established. Surface analysis shows that the nanoparticles are uniformly distributed on the surface of the mesoporous channel systems with high surface area 400 m2/g, and highly accessible pore system which has more capability to sense the broad pH range. The films show good optical qualities in the visible region with tunable refractive indices 1.57, 1.52-and 1.56. The response of the prepared sensor even shows stability towards higher pH value 12 and has linear relationship with correlation coefficient R2 ∼0.9341. The sensitivity of the proposed pH sensor is observed to be 0.614 mV/pH.
format Article
author Islam, Shumaila
Bakhtiar, Hazri
Bidin, Noriah
Salim, Ali Aqeel
Riaz, Saira
Krishnan, Ganesan
Naseem, Shahzad
author_facet Islam, Shumaila
Bakhtiar, Hazri
Bidin, Noriah
Salim, Ali Aqeel
Riaz, Saira
Krishnan, Ganesan
Naseem, Shahzad
author_sort Islam, Shumaila
title Crack-free high surface area silica-titania nanocomposite coating as opto-chemical sensor device
title_short Crack-free high surface area silica-titania nanocomposite coating as opto-chemical sensor device
title_full Crack-free high surface area silica-titania nanocomposite coating as opto-chemical sensor device
title_fullStr Crack-free high surface area silica-titania nanocomposite coating as opto-chemical sensor device
title_full_unstemmed Crack-free high surface area silica-titania nanocomposite coating as opto-chemical sensor device
title_sort crack-free high surface area silica-titania nanocomposite coating as opto-chemical sensor device
publisher Elsevier B. V.
publishDate 2018
url http://eprints.utm.my/id/eprint/86721/
http://dx.doi.org/10.1016/j.sna.2017.12.063
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