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Enhanced Hydrogenation Properties of Size Selected Pd-C Core-Shell Nanoparticles; Effect of Carbon Shell Thickness

机译:选定尺寸的Pd-C核壳纳米粒子的氢化性能增强;碳壳厚度的影响

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摘要

Effect of nanoparticle size and alloying has been well studied in Pd and Pd alloy nanoparticles and explained on the basis of modifications in the crystal structure and Pd 4d binding energy position. In the present study, the effect of carbon shell thickness on the hydrogenation properties of gas phase synthesized Pd-C core shell nanoparticles having controllable nanoparticle core and shell thickness has been investigated. A large improvement in H/Pd ratio and increased hydrogen induced lattice expansion is observed in Pd-C nanoparticles. These results are explained on the basis of lowering of coordination number of Pd surface sites at Pd-C core shell interface revealed by the increase in the Pd 4d binding energy on increase in shell thickness. By combining the modification in electronic properties due to the size and the alloying effects with that due to carbon shell thickness, as reported in the present study, Pd-H interaction can be significantly enhanced.
机译:在Pd和Pd合金纳米颗粒中,已经很好地研究了纳米颗粒尺寸和合金化的影响,并基于晶体结构和Pd 4d结合能位置的修饰进行了解释。在本研究中,已经研究了碳壳厚度对具有可控制的纳米颗粒核和壳厚度的气相合成的Pd-C核壳纳米颗粒的氢化性能的影响。在Pd-C纳米粒子中,观察到H / Pd比的大幅改善和氢诱导的晶格扩展的增加。这些结果是基于降低的Pd-C核壳界面上的Pd表面位点的配位数而解释的,这是由Pd 4d结合能随壳厚度的增加而揭示的。如本研究中所述,通过将由于尺寸和合金化作用而引起的电子性能变化与由于碳壳厚度而引起的变化相结合,可以显着增强Pd-H相互作用。

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