Tuning the hydrophobic properties of silica particles by surface silanization using mixed self-assembled monolayers

Here we describe a novel method of preparing hydrophobic silica particles (100–150 nm; water contact angle of dropcasted film ranging from 60° to 168°) by surface functionalization using different alkyltrichlorosilanes. During their preparation, the molecular surface roughness is also concurrently e...

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Published inJournal of colloid and interface science Vol. 318; no. 2; pp. 372 - 379
Main Authors Kulkarni, Sneha A., Ogale, Satishchandra B., Vijayamohanan, Kunjukrishanan P.
Format Journal Article
LanguageEnglish
Published San Diego, CA Elsevier Inc 15.02.2008
Elsevier
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Abstract Here we describe a novel method of preparing hydrophobic silica particles (100–150 nm; water contact angle of dropcasted film ranging from 60° to 168°) by surface functionalization using different alkyltrichlorosilanes. During their preparation, the molecular surface roughness is also concurrently engineered facilitating a change in both the surface chemical composition and the geometrical microstructure to generate hierarchical structures. The water contact angle has been measured on drop-cast film surface. The enhancement in the water contact angle on 3D (curved) SAMs in comparison to that on 2D (planar) surface is discussed using the Cassie–Baxter equation. These silica particles can be utilized for many potential applications including selective adsorbents and catalysts, chromatographic supports and separators in microfluidic devices.
AbstractList Here we describe a novel method of preparing hydrophobic silica particles (100-150 nm; water contact angle of dropcasted film ranging from 60 degrees to 168 degrees) by surface functionalization using different alkyltrichlorosilanes. During their preparation, the molecular surface roughness is also concurrently engineered facilitating a change in both the surface chemical composition and the geometrical microstructure to generate hierarchical structures. The water contact angle has been measured on drop-cast film surface. The enhancement in the water contact angle on 3D (curved) SAMs in comparison to that on 2D (planar) surface is discussed using the Cassie-Baxter equation. These silica particles can be utilized for many potential applications including selective adsorbents and catalysts, chromatographic supports and separators in microfluidic devices.
Here we describe a novel method of preparing hydrophobic silica particles (100–150 nm; water contact angle of dropcasted film ranging from 60° to 168°) by surface functionalization using different alkyltrichlorosilanes. During their preparation, the molecular surface roughness is also concurrently engineered facilitating a change in both the surface chemical composition and the geometrical microstructure to generate hierarchical structures. The water contact angle has been measured on drop-cast film surface. The enhancement in the water contact angle on 3D (curved) SAMs in comparison to that on 2D (planar) surface is discussed using the Cassie–Baxter equation. These silica particles can be utilized for many potential applications including selective adsorbents and catalysts, chromatographic supports and separators in microfluidic devices.
Author Kulkarni, Sneha A.
Ogale, Satishchandra B.
Vijayamohanan, Kunjukrishanan P.
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  fullname: Ogale, Satishchandra B.
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  givenname: Kunjukrishanan P.
  surname: Vijayamohanan
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Issue 2
Keywords Alkyltrichlorosilane
Silanization
Silica particles
Superhydrophobicity
Particle
Self assembly
Mixed monolayer
Hydrophobicity
Silica
Language English
License CC BY 4.0
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Snippet Here we describe a novel method of preparing hydrophobic silica particles (100–150 nm; water contact angle of dropcasted film ranging from 60° to 168°) by...
Here we describe a novel method of preparing hydrophobic silica particles (100-150 nm; water contact angle of dropcasted film ranging from 60 degrees to 168...
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SubjectTerms Alkyltrichlorosilane
Chemistry
Colloidal state and disperse state
Exact sciences and technology
General and physical chemistry
Hydrophobic and Hydrophilic Interactions
Membranes, Artificial
Particle Size
Silanes - chemistry
Silanization
Silica particles
Silicon Dioxide - chemistry
Spectroscopy, Fourier Transform Infrared - methods
Superhydrophobicity
Surface physical chemistry
Surface Properties
Temperature
Thermogravimetry
Title Tuning the hydrophobic properties of silica particles by surface silanization using mixed self-assembled monolayers
URI https://dx.doi.org/10.1016/j.jcis.2007.11.012
https://www.ncbi.nlm.nih.gov/pubmed/18061606
https://search.proquest.com/docview/70170473
Volume 318
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