Herein, varied structural arrangements of CuO nanoparticles (NPs) were synthesized using Brønsted‐acidic 2‐methyl‐1,3‐disulfoimidazolium MDSIM + ionic liquids of different anions (OAc − , BF 4 − , and PF 6 − ) for in situ generation of complex anionic speciation BF 4 .Cu(OAc) 2 − /PF 6 .Cu(OAc) 2 − /Cu(OAc) 3 ] − as precursor templates after reaction with hydrated copper acetate in solvent‐free grinding method. The structural differences of CuO NPs were identified by analytical techniques. High‐resolution transmission electron microscope images showed their unique morphological nanostructures as nanospheres, well‐dispersed nanocapsules, and a fiber‐like network against the anions OAc − , BF 4 − , and PF 6 − of ionic liquids, respectively. Their observed bandgap variations from Tauc plots evidenced the effects of anions of ionic liquids on fabricating the optical properties of CuO NPs as porous materials. The reactivity of these nanoparticles was investigated as efficient recyclable heterogeneous catalysts for reduction of nitroarenes to arylamines in aqueous medium at mild reaction conditions.
Handique et al. (Thu,) studied this question.
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