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Optically active-thermally stable multi-dyes encapsulated mesoporous silica aerogel: A potential pH sensing nanomatrix
Owing to the pH sensing applications, a mixture of four pH dyes (phenol red, bromophenol blue, creosol red, and phenolphthalein) is encapsulated in mesoporous silica aerogel by sol-gel method. FE-SEM analysis shows that dyes have great influence on the morphology of silica matrix. After encapsulatio...
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Published in: | Microporous and mesoporous materials 2019-01, Vol.274, p.183-189 |
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Main Authors: | , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | Owing to the pH sensing applications, a mixture of four pH dyes (phenol red, bromophenol blue, creosol red, and phenolphthalein) is encapsulated in mesoporous silica aerogel by sol-gel method. FE-SEM analysis shows that dyes have great influence on the morphology of silica matrix. After encapsulation, silica aerogel matrix has low surface roughness ∼ 1.76 nm, ultra-thin layer 8.26 nm, high surface area of 433 m2/g, high optical transparency 77%, low refractive index ∼1.37 at 550 nm and thermally stable. The sensor response is optimized at pH 1–12 with the high value of pKa ∼8.35 at 565 nm without any leaching traces. The fast response time 0.71s in acidic medium (pH 1) and 0.36 s in basic medium (pH 12) is observed. From experimental findings, it can be concluded that fusion of sol-gel and nano-technologies can thus open a new way to synthesize thermally stable, high quality nano-porous optical material for sensing applications at dynamic pH range.
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•Indicator dyes encapsulated mesoporous silica aerogel matrix is synthesized by sol-gel method for pH sensing.•Microscopic analysis shows that indicator dyes has great influence on the morphology of host silica matrix aerogel.•BET analysis confirmed that silica matrix has a high surface area of ∼433 m2/g after dyes encapsulation.•Thermally stable matrix has optical transparency 77 % and low refractive index ~ 1.37 at 550 nm after encapsulation.•The sensor response is optimized at pH 12 with pKa ~ 8.35 value at 565 nm. The fast response time 0.36 s is reported. |
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ISSN: | 1387-1811 1873-3093 |
DOI: | 10.1016/j.micromeso.2018.07.049 |