首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Hydrogenation of CO2 on ZnO/Cu(100) and ZnO/Cu(111) Catalysts: Role of Copper Structure and Metal–Oxide Interface in Methanol Synthesis
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Hydrogenation of CO2 on ZnO/Cu(100) and ZnO/Cu(111) Catalysts: Role of Copper Structure and Metal–Oxide Interface in Methanol Synthesis

机译:ZnO / Cu(100)和ZnO / Cu(111)催化剂上的CO 2℃的氢化:铜结构和金属氧化物界面在甲醇合成中的作用

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The results of kinetic tests and ambient-pressure X-ray photoelectron spectroscopy (AP-XPS) show the important role played by a ZnO–copper interface in the generation of CO and the synthesis of methanol from CO_(2) hydrogenation. The deposition of nanoparticles of ZnO on Cu(100) and Cu(111), θ_(oxi) < 0.3 monolayer, produces highly active catalysts. The catalytic activity of these systems increases in the sequence: Cu(111) < Cu(100) < ZnO/Cu(111) < ZnO/Cu(100). The structure of the copper substrate influences the catalytic performance of a ZnO–copper interface. Furthermore, size and metal–oxide interactions affect the chemical and catalytic properties of the oxide making the supported nanoparticles different from bulk ZnO. The formation of a ZnO–copper interface favors the binding and conversion of CO_(2) into a formate intermediate that is stable on the catalyst surface up to temperatures above 500 K. Alloys of Zn with Cu(111) and Cu(100) were not stable at the elevated temperatures (500–600 K) used for the CO_(2) hydrogenation reaction. Reaction with CO_(2) oxidized the zinc, enhancing its stability over the copper substrates.
机译:动力学试验和环境压力X射线光电子能谱(AP-XPS)的结果表明了来自CO和合成来自CO_(2)氢化的ZnO-铜界面在CO和合成中起作用的重要作用。 ZnO纳米颗粒在Cu(100)和Cu(111),θ_(Oxi)<0.3单层上的沉积产生高活性催化剂。这些系统的催化活性在序列中增加:Cu(111)

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