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- W2558481641 abstract "LaPO4 has been used as a support to make supported catalysts in some investigations, but the effect of different LaPO4 supports on the catalytic performance of supported catalysts has been rarely reported. In this work, conventional hexagonal LaPO4 (LaPO4H) was prepared by precipitation, and hexagonal LaPO4 nanowires (LaPO4HNW) was prepared by hydrothermal synthesis at 150 °C. Monoclinic LaPO4 nanowires (LaPO4-MNW-220 and LaPO4-MNW-900) were prepared by hydrothermal synthesis at 220 °C or calcining LaPO4HNW at 900 °C. These samples were used to support Rh2O3 via impregnation using Rh(NO3)3 as a precursor. The activities of these supported catalysts in N2O decomposition and CO oxidation follow the same sequence of Rh2O3 / LaPO4HNW > Rh2O3 / LaPO4H > Rh2O3 / LaPO4-MNW-220 > Rh2O3 / LaPO4-MNW-900, i.e., two hexagonal LaPO4 supports are better than two monoclinic LaPO4 supports in making active catalysts, and hexagonal LaPO4 nanowires are better than hexagonal LaPO4 composed of nanoparticles and short nanorods. The most active catalyst has highly dispersed Rh2O3 species interacting strongly with the support, more oxygen-adsorption capacity, and more basic sites." @default.
- W2558481641 created "2016-12-08" @default.
- W2558481641 creator A5013881064 @default.
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- W2558481641 date "2017-02-01" @default.
- W2558481641 modified "2023-10-11" @default.
- W2558481641 title "Effect of different LaPO 4 supports on the catalytic performance of Rh 2 O 3 /LaPO 4 in N 2 O decomposition and CO oxidation" @default.
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- W2558481641 doi "https://doi.org/10.1016/j.jtice.2016.11.024" @default.
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