Effect of Sol–Gel Silica Matrices on the Chemical Properties of Adsorbed/Entrapped Compounds

Author:

Burg Ariela1,Yadav Krishna K.1ORCID,Meyerstein Dan23,Kornweitz Haya2ORCID,Shamir Dror4,Albo Yael5

Affiliation:

1. Chemical Engineering Department, Sami Shamoon College of Engineering, Beer-Sheva 84100, Israel

2. Chemical Sciences Department and The Radical Research Center, Ariel University, Ariel 40700, Israel

3. Chemistry Department, Ben-Gurion University, Beer-Sheva 8410501, Israel

4. Nuclear Research Centre Negev, Beer-Sheva 9001, Israel

5. Chemical Engineering Department and The Radical Research Center, Ariel University, Ariel 40700, Israel

Abstract

The sol–gel process enables the preparation of silica-based matrices with tailored composition and properties that can be used in a variety of applications, including catalysis, controlled release, sensors, separation, etc. Commonly, it is assumed that silica matrices prepared via the sol–gel synthesis route are “inert” and, therefore, do not affect the properties of the substrate or the catalyst. This short review points out that porous silica affects the properties of adsorbed/entrapped species and, in some cases, takes an active part in the reactions. The charged matrix affects the diffusion of ions, thus affecting catalytic and adsorption processes. Furthermore, recent results point out that ≡Si-O. radicals are long-lived and participate in redox processes. Thus, clearly, porous silica is not an inert matrix as commonly considered.

Publisher

MDPI AG

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