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Novel Ce0.8Pr0.2O2 nanotube arrays synthesized by hydrothermal method with excellent catalytic performance

机译:新型CE0.8PR0.2O2由水热法合成的纳米管阵列,具有优异的催化性能

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In this research, nanotube arrays of Ce0.8Pr0.2O2 were synthesized on a monolith cordierite honeycomb by the low temperature hydrothermal method. Pre-synthesized ZnO nano-rods on cordierite act as a hard template for Ce0.8Pr0.2O2 deposition. The formation of Ce0.8Pr0.2O2 nanotube arrays was characterized by XRD, selective chemical leaching, BET, and FESEM. The calculated surface area of Ce0.8Pr0.2O2 nanotube arrays was 80 m(2)/g. The external diameter and the wall thickness of Ce0.8Pr0.2O2 nanotube arrays were 250 and 100 nm, respectively. In addition, Ce0.8Pr0.2O2 nanotube had a length of about 1 mu m. Pd decorated nanotube arrays catalyst present a lower light-off temperature and a higher thermal stability than a commercial catalyst in CO conversion catalyst test. Thermal stability of this catalyst is 10 times more than the commercial catalyst at 200 degrees C. The excellent catalyst performance of Ce0.8Pr0.2O2 nanotube arrays can be attributed to the presence of praseodymium, a high surface area, and a thick wall of Ce0.8Pr0.2O2 nanotubes arrays.
机译:在该研究中,通过低温水热法在整料堇青石蜂窝中合成CE0.8PR0.2O2的纳米管阵列。堇青石上的合成ZnO纳米棒作为Ce0.8pr0.2O2沉积的硬模板。 CE0.8PR0.2O2纳米管阵列的形成特征在于XRD,选择性化学浸出,BET和FESEM。 Ce0.8pr0.2O2纳米管阵列的计算表面积为80m(2)/ g。 Ce0.8pr0.2O2纳米管阵列的外径和壁厚分别为250和100nm。此外,CE0.8PR0.2O2纳米管的长度约为1μm。 PD饰有纳米管阵列催化剂呈较低的脱气温度和较高的热稳定性而不是CO转化催化剂试验中的商业催化剂。该催化剂的热稳定性在200℃下的商业催化剂的10倍。Ce0.8pr0.2O2纳米管阵列的优异催化剂性能可归因于镨,高表面积和Ce0厚壁的存在。 .8pr0.2o2纳米管阵列。

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