4.6 Review

Silica-Based Supported Ionic Liquid-like Phases as Heterogeneous Catalysts

Journal

MOLECULES
Volume 27, Issue 18, Pages -

Publisher

MDPI
DOI: 10.3390/molecules27185900

Keywords

ionic liquids; acidic ionic liquids; supported ionic liquid phase; heterogeneous catalysis; silica; immobilization

Funding

  1. National Science Centre, Poland [UMO2020/39/B/ST8/00693]
  2. SilesianUniversity of Technology (Poland) [04/050/BKM22/0151]

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Supported ionic liquid phases offer several advantages in catalysis, providing catalytic activity or efficient matrix and improving mass transport. Silica-based materials, due to their cost-efficiency and specific properties, are widely used in this field.
Supported ionic liquid phases offer several advantages related with catalysis. Immobilization of ionic liquid on the solid support provides catalytic activity or efficient matrix for active phases, as enzymes or metal compounds. Ionic liquid can be physically adsorbed on the carrier (supported ionic liquid phase) or chemically grafted to the material surface (supported ionic liquid-like phase). The use of supported ionic liquid phases improves mass transport, reduces ionic amount in the process and, most importantly, enables effortless catalyst separation and recycling. Moreover, chemical modification of the surface material with ionic liquid prevents its leaching, enhancing length of catalyst life. Silica-based materials have become an effective and powerful matrix for supported ionic liquid-like phase due to its cost-efficiency, presence of hydroxyl groups on the surface enabling its functionalization, and specific material properties, such as the size and shapes of the pores. For these reasons, supported ionic liquid-like phase silica-based materials are successfully used in the organic catalysis.

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