Graphene Oxide‐Supported Chromium‐Containing Polyoxometalate as an Efficient Heterogeneous Catalyst for Nitroarene Reduction Under Mild Conditions
Maryam Khalaji‐Verjani, Majid Masteri‐Farahani, Alireza Badiei, Ghodsi Mohammadi Ziarani, Senem Akkoc, Mehran Feizi‐DehnayebiABSTRACT
Selective hydrogenation of nitroarenes is a valuable organic reaction that has attracted significant interest from researchers in recent years. Herein, a new nanocomposite (GO@POM‐Cr) was prepared via an electrostatic assembly method. The surface of graphene oxide (GO) was modified with ammonium groups, and the chromium‐containing polyoxomolybdate anion, Na 4 [PCr(H 2 O)Mo 11 O 39 ] (POM‐Cr), was subsequently immobilized on GO as the counter anion to the ammonium cation through a simple ion‐exchange process. The Fourier‐ transform infrared (FT‐IR) spectroscopy confirmed the successful immobilization of POM‐Cr, with the P‐O a peak at ∼1118 cm −1 appearing as a single, unsplit band, directly evidencing chromium incorporation into the Keggin framework. The surface properties of GO@POM‐Cr were further investigated using Raman spectroscopy, X‐ray diffraction (XRD) analysis, and elemental analysis. Remarkably, the GO@POM‐Cr nanocomposite demonstrated high catalytic efficiency for nitroarene reduction (99% conversion) under mild reaction conditions. The reactions were performed in ethanol as a green solvent in the presence of hydrazine hydrate as the reducing agent. Mechanistic investigations suggested that the reduction proceeds via a direct pathway involving nitroso and hydroxylamine intermediates, affording the corresponding anilines with excellent selectivity and catalyst stability over multiple reaction cycles.