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Article

Synthesis and Characterization of Novel Pyridine Periodic Mesoporous Organosilicas and Its Catalytic Activity in the Knoevenagel Condensation Reaction

1
Department of Science, Payame Noor University, P.O. Box: 19395-4697, Tehran 19569, Iran
2
Iran Polymer and Petrochemical Institute (IPPI), P.O. Box 112/14975, Tehran 19569, Iran
3
Department of Organic Chemistry, University of Cordoba, Ed. Marie Curie (C 3), Campus of Rabanales, Ctra Nnal IV-A, Km 396, E14014 Cordoba, Spain
*
Author to whom correspondence should be addressed.
Materials 2020, 13(5), 1097; https://doi.org/10.3390/ma13051097
Submission received: 20 January 2020 / Revised: 13 February 2020 / Accepted: 18 February 2020 / Published: 2 March 2020
(This article belongs to the Special Issue Advances in Microporous and Mesoporous Materials)

Abstract

The preparation of novel organic-inorganic hybrid mesoporous organosilica containing pyridinedicarboxamide functional groups uniformly distributed inside the nanostructured pore walls has been addressed. The mesoporosity and uniformity of the synthesized nanomaterials were characterized by different techniques such as nitrogen adsorption/desorption measurements and powder X-ray diffraction (PXRD). Additionally, the presence of the pyridinedicarboxamide in the pore walls of the nanomaterials was assessed by Fourier-transform infrared spectroscopy (FT-IR), as well as 29Si and 13C solid-state cross-polarization and magic angle spinning nuclear magnetic resonance (CP/MAS-NMR). The Knoevenagel condensation of aldehydes with active methylene compounds was carried out over the pyridinedicarboxamide functionalized mesoporous organosilica, which has been proven to be an efficient heterogeneous basic catalyst in the presence of ethanol as solvent. The catalytic activity of the investigated materials was investigated in the Knoevenagel condensation between malononitrile and several benzaldehyde derivatives exhibiting a high conversion (>90%) and excellent selectivity toward the final condensation products under very mild reaction conditions. Furthermore, the catalyst stability is noteworthy as it could be recycled and reused at least twelve times without any significant change in the performance.
Keywords: periodic mesoporous organosilica; pyridine carboxamide; base catalysts; Knoevenagel condensation periodic mesoporous organosilica; pyridine carboxamide; base catalysts; Knoevenagel condensation

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MDPI and ACS Style

Rajabi, F.; Ebrahimi, A.Z.; Rabiee, A.; Pineda, A.; Luque, R. Synthesis and Characterization of Novel Pyridine Periodic Mesoporous Organosilicas and Its Catalytic Activity in the Knoevenagel Condensation Reaction. Materials 2020, 13, 1097. https://doi.org/10.3390/ma13051097

AMA Style

Rajabi F, Ebrahimi AZ, Rabiee A, Pineda A, Luque R. Synthesis and Characterization of Novel Pyridine Periodic Mesoporous Organosilicas and Its Catalytic Activity in the Knoevenagel Condensation Reaction. Materials. 2020; 13(5):1097. https://doi.org/10.3390/ma13051097

Chicago/Turabian Style

Rajabi, Fatemeh, Arezoo Zare Ebrahimi, Ahmad Rabiee, Antonio Pineda, and Rafael Luque. 2020. "Synthesis and Characterization of Novel Pyridine Periodic Mesoporous Organosilicas and Its Catalytic Activity in the Knoevenagel Condensation Reaction" Materials 13, no. 5: 1097. https://doi.org/10.3390/ma13051097

APA Style

Rajabi, F., Ebrahimi, A. Z., Rabiee, A., Pineda, A., & Luque, R. (2020). Synthesis and Characterization of Novel Pyridine Periodic Mesoporous Organosilicas and Its Catalytic Activity in the Knoevenagel Condensation Reaction. Materials, 13(5), 1097. https://doi.org/10.3390/ma13051097

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