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Large-Scale Synthesis of Palladium Concave Nanocubes with High-Index Facets for Sustainable Enhanced Catalytic Performance

机译:大规模合成具有高刻面的钯凹面纳米立方体以持续提高催化性能

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摘要

The catalytic activity of palladium (Pd) nanostructures highly relies on their size and morphology, especially enclosed with high-index facets, which provide more active sites so as to enhance their catalytic performance comparing with their low-index facet counterparts. Herein, Pd concave nanocubes enclosed with {730} facets by a one-pot scalable liquid method, with various high-index facets are synthesized via tuning reduction kinetics. Due to their high-index facets, the Pd concave nanocubes exhibit much higher electrocatalytic activity and stability for methanol oxidation than the Pd nanocubes enclosed by {100} facets and commercial Pd/C. Furthermore, we scale up synthesis of Pd concave nanocubes by expanding the volume of all species to fifty times with high-yield production.
机译:钯(Pd)纳米结构的催化活性高度依赖于其尺寸和形态,尤其是被高折射率小平面包围,后者提供了更多的活性位点,从而与低折射率小平面对应物相比增强了其催化性能。在此,通过调整还原动力学,通过一锅可缩放液体方法用{730}小面包围的Pd凹纳米立方体具有各种高折射率小面。由于它们的高折射率小平面,Pd凹形纳米立方体比{100}小平面和商用Pd / C包围的Pd纳米立方体具有更高的电催化活性和对甲醇氧化的稳定性。此外,我们通过将所有物种的体积扩大到五十倍,并以高产量生产来扩大Pd凹面纳米立方体的合成。

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