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Ultra-small Pd clusters supported by chitin nanowires as highly efficient catalysts 被引量:1

Ultra-small Pd clusters supported by chitin nanowires as highly efficient catalysts
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摘要 For the first time, chitin microspheres woven from nanowires with multi-scale porous structures were used as an excellent support for a catalyst of ultra-small Pd clusters. The Pd species anchored on the precursor Pre-Pd@chitin were 0.6 nm in average size, while the reduced catalyst Red-Pd@chitin featured ultra-small particles of 1.3 nm in average size. X-ray absorption spectroscopy (XAS) and transmission electron microscopy (TEM) demonstrated that the Pd catalyst in both oxidative and reductive states retained good dispersity and ultra-small clusters. The catalyst was tested for the hydrogenation of p-nitroanisole, exhibiting an excellent initial rate (13× that of commercial Pd/C) and excellent turnover frequency reaching 52,000 h^-1. Furthermore, the catalyst could be recycled and used more than 10 times with no decay of the catalytic activity, suggesting potential industrial applications. For the first time, chitin microspheres woven from nanowires with multi-scale porous structures were used as an excellent support for a catalyst of ultra-small Pd clusters. The Pd species anchored on the precursor Pre-Pd@chitin were 0.6 nm in average size, while the reduced catalyst Red-Pd@chitin featured ultra-small particles of 1.3 nm in average size. X-ray absorption spectroscopy (XAS) and transmission electron microscopy (TEM) demonstrated that the Pd catalyst in both oxidative and reductive states retained good dispersity and ultra-small clusters. The catalyst was tested for the hydrogenation of p-nitroanisole, exhibiting an excellent initial rate (13× that of commercial Pd/C) and excellent turnover frequency reaching 52,000 h^-1. Furthermore, the catalyst could be recycled and used more than 10 times with no decay of the catalytic activity, suggesting potential industrial applications.
出处 《Nano Research》 SCIE EI CAS CSCD 2018年第6期3145-3153,共9页 纳米研究(英文版)
关键词 Pd clusters chitin nanowires supported catalyst HYDROGENATION Pd clusters chitin nanowires supported catalyst hydrogenation
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  • 1Zhao, X. Y.; Long, R.; Liu, D.; Luo, B. B.; Xiong, Y. J. Pd-Ag alloy nanocages: Integration of Ag plasmonic properties with Pd active sites for light-driven catalytic hydrogenation. J. Mater. Chem. A 2015, 3, 9390-9394.
  • 2Le Gudvel, X.; Perez Perrino, M.; Femandez, T. D., Palomares, F.; Torres, M.-J.; Blanca, M.; Rojo, J.; Mayorga, C. Multivalent glycosylation of fluorescent gold nanoclusters promotes increased human dendritic cell targeting via multiple endocytic pathways. ACS Appl. Mater. InterJaces 2015, 7, 20945 20956.
  • 3Tai, Y.-L.; Yang, Z.-G. Facile and scalable preparation of solid silver nanoparticles (<10 nm) for flexible electronics. ACS Appl. Mater. Interfaces 2015, 7, 17104-117111.
  • 4Cunningham, J. C.; Kogan, M. R.; Tsai, Y.-J.; Luo, L.; Richards, I.; Crooks, R. M. Paper-based sensor for electro- chemical detection of silver nanoparticle labels by galvanic exchange. ACS Sens. 2016, 1, 40-4%.
  • 5Li, B.; Ye, S. R.; Stewart, I. E.; Alvarez, S.; Wiley, B. J. Synthesis and purification of silver nanowires to make conducting films with a transmittance of 99%. Nano Lett. 2015, 15, 6722-6726.
  • 6Liang, M.; Su, R. X.; Huang, R. L.; Qi, w.; Yu, Y. J.; Wang, L. B.; He, Z. M. Facile in situ synthesis of silver nanoparticles on procyanidin-grafted eggshell membrane and their catalytic properties. ACS Appl. Mater. Interfaces 2014, 6, 4638-4649.
  • 7Annur, D.; Wang, Z,-K.; Liao, J.-D.; Kuo, C. Plasma- synthesized silver nanoparticles on electrospun chitosan nanofiber surfaces for antibacterial applications. Biomacro- molecules 2015, 16, 3248-3255.
  • 8Cao, Q.; Yuan, K. P.; Liu, Q. H.; Liang, C. Y.; Wang, X.; Cheng, Y.-F.; Li, Q. Q.; Wang, M.; Che, R. C. Porous Au-Ag alloy particles inlaid AgCI membranes as versatile plasmonic catalytic interfaces with simultaneous, in situ SERS monitoring. ACS Appl. Mater. Interfaces 2015, 7, 18491-18500.
  • 9Anandhakumar, S.; Sasidharan, M.; Tsao, C.-W.; Raichur, A. M. Tailor-made hollow silver nanoparticle cages assembled with silver nanoparticles: An efficient catalyst for epoxidation. ACS Appl. Mater. Interfaces 2014, 6, 3275-3281.
  • 10Ghosh, S.; Acharyya, S. S.; Tripathi, D.; Bal, R. Preparation of silver-tungsten nanostructure materials for selective oxidation of toluene to benzaldehyde with hydrogen peroxide. J. Mater. Chem. A 2014, 2, 15726-15733.

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