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Träfflista för sökning "WFRF:(Ludvigsson M. L.) srt2:(2015-2019);hsvcat:2"

Search: WFRF:(Ludvigsson M. L.) > (2015-2019) > Engineering and Technology

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  • Hallberg, R. T., et al. (author)
  • Hydrogen-assisted spark discharge generated metal nanoparticles to prevent oxide formation
  • 2018
  • In: Aerosol Science and Technology. - : Informa UK Limited. - 0278-6826 .- 1521-7388. ; 52:3, s. 347-358
  • Journal article (peer-reviewed)abstract
    • There exists a demand for production of metal nanoparticles for today's emerging nanotechnology. Aerosol-generated metal nanoparticles can oxidize during particle formation due to impurities in the carrier gas. One method to produce unoxidized metal nanoparticles is to first generate metal oxides and then reduce them during sintering. Here, we propose to instead prevent oxidation by introducing the reducing agent already at particle formation. We show that by mixing 5% hydrogen into the nitrogen carrier gas, we can generate single crystalline metal nanoparticles by spark discharge from gold, cobalt, bismuth, and tin electrodes. The non-noble nanoparticles exhibit signs of surface oxidation likely formed post-deposition when exposed to air. Nanoparticles generated without hydrogen are found to be primarily polycrystalline and oxidized. To demonstrate the advantages of supplying the reducing agent at generation, we compare to nanoparticles that are generated in nitrogen and sintered in a hydrogen mixture. For bismuth and tin, the crystal quality of the particles after sintering is considerably higher when hydrogen is introduced at particle generation compared to at sintering, whereas for cobalt it is equally effective to only add hydrogen at sintering. We propose that hydrogen present at particle generation prevents the formation of oxide primary particles, thus improving the ability to sinter the nanoparticles to compact and single crystals of metal. This method is general and can be applied to other aerosol generation systems, to improve the generation of size-controlled nanoparticles of non-noble metals with a suitable reducing agent.
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3.
  • Kohut, A., et al. (author)
  • From plasma to nanoparticles : Optical and particle emission of a spark discharge generator
  • 2017
  • In: Nanotechnology. - : IOP Publishing. - 0957-4484 .- 1361-6528. ; 28:47
  • Journal article (peer-reviewed)abstract
    • The increased demand for high purity nanoparticles (NPs) of defined geometry necessitates the continuous development of generation routes. One of the most promising physical techniques for producing metal, semiconductor or alloy NPs in the gas phase is spark discharge NP generation. The technique has a great potential for up-scaling without altering the particles. Despite the simplicity of the setup, the formation of NPs in a spark discharge takes place via complex multi-scale processes, which greatly hinders the investigation via conventional NP measurement techniques. In the present work, time-resolved optical emission spectroscopy (OES) was used to provide information on the species present in the spark from as early as approximately 100 ns after the initiation of the discharge. We demonstrate that operando emission spectroscopy can deliver valuable insights into NP formation. The emission spectra of the spark are used to identify, among others, the main stages of material erosion and to calculate the quenching rate of the generated metal vapour. We demonstrate that the alteration of key control parameters, that are typically used to optimize NP generation, clearly affect the emission spectra. We report for Cu and Au NPs that the intensity of spectral lines emitted by metal atoms levels off when spark energy is increased above an energy threshold, suggesting that the maximum concentration of metal vapour produced in the generator is limited. This explains the size variation of the generated NPs. We report a strong correlation between the optical and particle emission of the spark discharge generator, which demonstrate the suitability of OES as a valuable characterization tool that will allow for the more deliberate optimization of spark-based NP generation.
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  • Result 1-3 of 3
Type of publication
journal article (2)
conference paper (1)
Type of content
peer-reviewed (3)
Author/Editor
Ludvigsson, L. (3)
Messing, M. E. (2)
Meuller, B. O. (2)
Gudmundsson, Anders (1)
Pagels, Joakim (1)
Dick, K. A. (1)
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Deppert, K. (1)
Galbacs, G. (1)
Geretovszky, Zs. (1)
Hallberg, R. T. (1)
Preger, C. (1)
Messing, ME (1)
Kohut, A (1)
Lovén, K. (1)
Hedmer, M. (1)
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University
Lund University (3)
Language
English (3)
Research subject (UKÄ/SCB)
Natural sciences (3)

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