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Updated: Aug 15, 2025

Biofunctionalized Prussian Blue Nanoparticles for Multimodal Molecular Imaging Applications
Published on: April 28, 2015
Exceptionally high and reversible NO uptake by hollow Mn-Fe composite nanocubes derived from Prussian blue analogues
1School of Environmental Science and Engineering, Shandong University, No. 72 Seaside Road, Qingdao 266237, China. wangrui@sdu.edu.cn.
Abstract:
Noble metal-based catalysts are widely used as passive NO adsorbers (PNA) for cold-start NO emissions; however, efficient porous materials as an alternative have great development potential. Herein, porous Mn-Fe composites with hollow nanocubes derived from Prussian blue analogue (PBA) precursors were used as PNA. The effects of O2, the molar ratio of Mn/Fe, calcination temperature and reaction temperature on their adsorption capacity were explored. The physicochemical properties of the obtained catalysts were systematically characterized by XRD, SEM, BET surface area, TGA, XPS and DRIFT techniques. The developed Mn1Fe2-450 presented excellent NO uptake (more than 2.16 mmol g-1 at 200 °C). Moreover, a high NO adsorption performance was also retained in the presence of 10% water vapor. The existing Mn3+ and Fe2+ species could contribute to the NO adsorption and gaseous O2 can accelerate NO activation to form more easily adsorbed NO2. Surface NO2 is further diffused and stored into the bulk of the Mn-Fe composite in the form of nitrite and nitrate. This work revealed a novel candidate for PNA catalysts, which might provide inspiration for the design of new adsorbent materials.

