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On page 4481, H. Abe, K. Ariga, S. Ishihara, and co‐workers demonstrate that single‐crystalline {001} nanoplates of an abundantly available copper oxide, when interleaved with each other in the form of a flower‐like microstructure, remediate toxic nitrogen oxides into environmentally benign nitrogen more efficiently at low temperatures than preciousmetal catalysts such as platinum, palladium, and...
A copper(II)‐oxide‐based exhaust catalyst exhibits better activity than Pt‐ and Rh‐nanoparticle catalysts in NO remediation at 175 °C. Following theoretical design, the CuO catalyst is rationally prepared; CuO nanoplates bearing a maximized amount of the active {001} facet are arranged in interleaved layers. A field test using a commercial gasoline engine demonstrates the ability of the catalyst to...
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