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Factors Influencing the Performance of Pd/C Catalysts in the Green Production of Hydrogen from Formic Acid

机译:影响PD / C催化剂在甲酸氢生产中PD / C催化剂性能的因素

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摘要

Formic acid derived from biomass is known to be used for hydrogen production over Pd catalysts. The effects of preparation variables, structure of the carbon support, surface functional composition on the state of Pd, and catalytic properties of the samples in the vapor-phase decomposition of formic acid were studied. In all catalysts derived from Pd acetate, metal particles visible by conventional TEM had similar sizes, but the adsorption capacity towards CO responded strongly to N-doping of the carbon surface. Moreover, a decrease in the CO/Pd values was accompanied by a significant increase in the reaction rate. Taking account of X-ray photoelectron spectroscopy (XPS) and atomic resolution high-angle annular dark-field scanning transmission electron microscopy (HAADF/STEM) data, the trends observed were assigned to a larger fraction of single electron-deficient Pd atoms in the N-doped samples, which do not adsorb CO but interact with formic acid to produce hydrogen. This was confirmed by extended DFT studies. The obtained results are valuable for the development of Pd catalysts on carbon supports for different processes.
机译:已知衍生自生物质的甲酸用于通过Pd催化剂产生氢气。研究了制备变量,碳载体结构,表面功能组合物对Pd状态的影响,以及甲酸气相分解中的样品的催化性质。在衍生自Pd乙酸盐的所有催化剂中,通过常规TEM可见的金属颗粒具有相似的尺寸,但是朝向CO的吸附能力强烈地反应碳表面的N掺杂。此外,CO / Pd值的降低伴随着反应速率的显着增加。考虑到X射线光电子谱(XPS)和原子分辨率高角度环形扫描透射电子显微镜(HAADF / Stem)数据,观察到的趋势被分配到更大的单电子缺陷PD原子N-掺杂的样品,其不吸附CO,但与甲酸相互作用以产生氢。这是通过延长的DFT研究证实。得到的结果对于对不同方法的碳载体的Pd催化剂的开发是有价值的。

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