Issue 6, 2013

Piperazine-functionalized ordered mesoporous polymer as highly active and reusable organocatalyst for water-medium organic synthesis

Abstract

A piperazine-functionalized mesoporous polymer (PP-MPs) was synthesized through a one-step surfactant-directed phenol–formaldehyde–piperazinecarbaldehyde oligomer self-assembly approach. This novel PP-MP catalyst exhibited highly catalytic reactivity and selectivity for water-medium Knoevenagel reaction, water-medium [3 + 3] cycloaddition reaction and intermolecular cross-conjugated addition reaction. The excellent performance could be attributed to its high dispersion of piperazine active sites and ordered mesoporous structure, which effectively diminished the steric hindrance and diffusion limitation. Moreover, its pure organic framework could enhance surface hydrophobicity, which promoted organic reactant molecule adsorption, especially in water. Meanwhile, piperazine functional groups embedded in the polymeric framework could inhibit the leaching of active species and thus resulted in the excellent durability without significant loss of activity for recovery and recycling at least four times.

Graphical abstract: Piperazine-functionalized ordered mesoporous polymer as highly active and reusable organocatalyst for water-medium organic synthesis

Article information

Article type
Paper
Submitted
28 Jan 2013
Accepted
05 Apr 2013
First published
08 Apr 2013

Green Chem., 2013,15, 1665-1672

Piperazine-functionalized ordered mesoporous polymer as highly active and reusable organocatalyst for water-medium organic synthesis

F. Zhang, X. Yang, L. Jiang, C. Liang, R. Zhu and H. Li, Green Chem., 2013, 15, 1665 DOI: 10.1039/C3GC40215K

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