Simple and Facile Approach To Create Charge Reversible Pores via Hydrophobic Anchoring of Ionic Amphiphiles

Sonu, K. P. ; Pavan Kumar, B. V. V. S. ; George, Subi J. ; Eswaramoorthy, Muthusamy (2017) Simple and Facile Approach To Create Charge Reversible Pores via Hydrophobic Anchoring of Ionic Amphiphiles ACS Applied Materials & Interfaces, 9 (10). pp. 9136-9142. ISSN 1944-8244

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Official URL: http://doi.org/10.1021/acsami.6b16194

Related URL: http://dx.doi.org/10.1021/acsami.6b16194

Abstract

Mesoporous silica-based charge reversal systems have gained significant attention in recent years due to a variety of applications such as drug delivery, dye adsorption, catalysis, chromatography, etc. Such systems often use covalent strategies to immobilize functional groups on the silica scaffold. However, lack of dynamism, modularity, and postsynthetic flexibility associated with covalent routes limit their wider applicability. Alternatively, supramolecular routes are gaining increased attention owing to their ability to overcome these limitations. Here, we introduce a simple and facile noncovalent design for a highly reversible assembly of charged amphiphiles within mesopores. Hexyl pendant groups were covalently attached to the surface to provide hydrophobic anchoring for charged amphiphiles to enable facile switching of surface charge of the mesoporous silica. These charge-switchable surfaces were used for fast and selective adsorption of dyes from aqueous solutions.

Item Type:Article
Source:Copyright of this article belongs to American Chemical Society.
Keywords:Charge Reversal; Hydrophobic Interaction; Mesoporous Materials; Supramolecular Chemistry; Dye Adsorption; Recyclable Scaffold.
ID Code:117717
Deposited On:30 Apr 2021 08:53
Last Modified:30 Apr 2021 08:53

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