4.2 Article

Bio-synthesis of palladium nanocubes and their electrocatalytic properties

期刊

IET NANOBIOTECHNOLOGY
卷 12, 期 8, 页码 1031-1036

出版社

WILEY
DOI: 10.1049/iet-nbt.2018.5159

关键词

transmission electron microscopy; oxidation; electron diffraction; catalysts; visible spectra; reduction (chemical); catalysis; palladium; nanofabrication; nanoparticles; particle size; ultraviolet spectra; X-ray diffraction; electrolysis; Fourier transform infrared spectra; organic compounds; palladium nanocubes; cetyl trimethyl ammonium bromide; capping agent; chemical reducing agents; high-resolution TEM; selected area electron diffraction; biomass; electrocatalytic properties; pine needle extract; ultraviolet-visible spectroscopy; Fourier transform infrared spectroscopy; flavonoids; esters; terpenoids; polyhydric alcohols; transmission electron microscopy; X-ray diffraction; face-centred cubic structure; particle size; methanol electrooxidation reaction; biosynthesis processes; catalysts; antipoisoning ability; long-term stability; Pd

资金

  1. National Natural Science Foundation of China [21676074]
  2. Project of Heilongjiang Science and technology [ZY17A06]
  3. Science Foundation of Heilongjiang Academy of Sciences [YY2017SH01, ZNBZ2018SH01]

向作者/读者索取更多资源

The bio-synthesis of palladium nanocubes (PdNCs) was realised using pine needle extract as the reducing agent and cetyl trimethyl ammonium bromide as the capping agent. As an eco-friendly and readily available biomass, pine needle extract avoided the use of highly polluting chemical reducing agents. The growth process of PdNCs was analysed using ultraviolet-vis and Fourier transform infrared spectroscopy. Flavonoids, esters, terpenoids and polyhydric alcohols, which contain reductive groups, were mainly responsible for the transition of Pd2+ ions to PdNCs. The morphology and structure of PdNCs were characterised using transmission electron microscopy (TEM), high-resolution TEM, selected area electron diffraction and X-ray diffraction. It was indicated that the as-prepared PdNCs displayed a relatively high purity and good crystallinity with a face-centred cubic structure and exhibited sizes ranging from 6.11 to 29.51nm with an average particle size of 11.18nm. In the methanol electro-oxidation reaction, the PdNCs enclosed by {100} facets exhibited superior electro-catalytic activity to commercial Pd/C, which was rarely reported in other bio-synthesis processes for Pd catalysts. Meanwhile, the PdNCs showed excellent anti-poisoning ability and long-term stability. This study reveals the possibility of preparing shape-controlled PdNCs with a specific structure and excellent electro-catalytic activity.

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